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共有 2640 条符合本次的查询结果, 用时 4.3317839 秒

2221. The expanding amyloid family: Structure, stability, function, and pathogenesis.

作者: Michael R Sawaya.;Michael P Hughes.;Jose A Rodriguez.;Roland Riek.;David S Eisenberg.
来源: Cell. 2021年184卷19期4857-4873页
The hidden world of amyloid biology has suddenly snapped into atomic-level focus, revealing over 80 amyloid protein fibrils, both pathogenic and functional. Unlike globular proteins, amyloid proteins flatten and stack into unbranched fibrils. Stranger still, a single protein sequence can adopt wildly different two-dimensional conformations, yielding distinct fibril polymorphs. Thus, an amyloid protein may define distinct diseases depending on its conformation. At the heart of this conformational variability lies structural frustrations. In functional amyloids, evolution tunes frustration levels to achieve either stability or sensitivity according to the fibril's biological function, accounting for the vast versatility of the amyloid fibril scaffold.

2222. Designer AAV muscle up.

作者: Carsten G Bönnemann.
来源: Cell. 2021年184卷19期4845-4847页
Directed evolution of AAV capsids has been a successful strategy for generating bespoke serotypes to target gene therapies more specifically to the intended tissue. This has now been achieved for the largest organ, skeletal muscle, by selecting for an RGD containing integrin binding heptamer in a hypervariable region of the capsid of AAV9.

2223. Selfish centromeres, selfless heterochromatin.

作者: Elvira Nikalayevich.;Marie-Hélène Verlhac.
来源: Cell. 2021年184卷19期4843-4844页
Centromeres are specialized regions on chromosomes recruiting a set of proteins required for faithful chromosome segregation. Differences in centromere strength can potentially bias chromosome segregation toward one of the daughter cells during division. Kumon et al. propose a new model of evolutionary impact on the balance of centromere strength.

2224. Natural sensory context drives diverse brain-wide activity during C. elegans mating.

作者: Vladislav Susoy.;Wesley Hung.;Daniel Witvliet.;Joshua E Whitener.;Min Wu.;Core Francisco Park.;Brett J Graham.;Mei Zhen.;Vivek Venkatachalam.;Aravinthan D T Samuel.
来源: Cell. 2021年184卷20期5122-5137.e17页
Natural goal-directed behaviors often involve complex sequences of many stimulus-triggered components. Understanding how brain circuits organize such behaviors requires mapping the interactions between an animal, its environment, and its nervous system. Here, we use brain-wide neuronal imaging to study the full performance of mating by the C. elegans male. We show that as mating unfolds in a sequence of component behaviors, the brain operates similarly between instances of each component but distinctly between different components. When the full sensory and behavioral context is taken into account, unique roles emerge for each neuron. Functional correlations between neurons are not fixed but change with behavioral dynamics. From individual neurons to circuits, our study shows how diverse brain-wide dynamics emerge from the integration of sensory perception and motor actions in their natural context.

2225. Genome-wide functional screen of 3'UTR variants uncovers causal variants for human disease and evolution.

作者: Dustin Griesemer.;James R Xue.;Steven K Reilly.;Jacob C Ulirsch.;Kalki Kukreja.;Joe R Davis.;Masahiro Kanai.;David K Yang.;John C Butts.;Mehmet H Guney.;Jeremy Luban.;Stephen B Montgomery.;Hilary K Finucane.;Carl D Novina.;Ryan Tewhey.;Pardis C Sabeti.
来源: Cell. 2021年184卷20期5247-5260.e19页
3' untranslated region (3'UTR) variants are strongly associated with human traits and diseases, yet few have been causally identified. We developed the massively parallel reporter assay for 3'UTRs (MPRAu) to sensitively assay 12,173 3'UTR variants. We applied MPRAu to six human cell lines, focusing on genetic variants associated with genome-wide association studies (GWAS) and human evolutionary adaptation. MPRAu expands our understanding of 3'UTR function, suggesting that simple sequences predominately explain 3'UTR regulatory activity. We adapt MPRAu to uncover diverse molecular mechanisms at base pair resolution, including an adenylate-uridylate (AU)-rich element of LEPR linked to potential metabolic evolutionary adaptations in East Asians. We nominate hundreds of 3'UTR causal variants with genetically fine-mapped phenotype associations. Using endogenous allelic replacements, we characterize one variant that disrupts a miRNA site regulating the viral defense gene TRIM14 and one that alters PILRB abundance, nominating a causal variant underlying transcriptional changes in age-related macular degeneration.

2226. COVID-19 vaccines: Keeping pace with SARS-CoV-2 variants.

作者: Muge Cevik.;Nathan D Grubaugh.;Akiko Iwasaki.;Peter Openshaw.
来源: Cell. 2021年184卷20期5077-5081页
As the SARS-CoV-2 pandemic evolves, new variants continue to emerge. Some highly transmissible variants, such as Delta, also raised concerns about the effectiveness provided by current vaccines. Understanding immunological correlates of protection and how laboratory findings correspond to clinical effectiveness is imperative to shape future vaccination strategies.

2227. Open-state structure and pore gating mechanism of the cardiac sodium channel.

作者: Daohua Jiang.;Richard Banh.;Tamer M Gamal El-Din.;Lige Tonggu.;Michael J Lenaeus.;Régis Pomès.;Ning Zheng.;William A Catterall.
来源: Cell. 2021年184卷20期5151-5162.e11页
The heartbeat is initiated by voltage-gated sodium channel NaV1.5, which opens rapidly and triggers the cardiac action potential; however, the structural basis for pore opening remains unknown. Here, we blocked fast inactivation with a mutation and captured the elusive open-state structure. The fast inactivation gate moves away from its receptor, allowing asymmetric opening of pore-lining S6 segments, which bend and rotate at their intracellular ends to dilate the activation gate to ∼10 Å diameter. Molecular dynamics analyses predict physiological rates of Na+ conductance. The open-state pore blocker propafenone binds in a high-affinity pose, and drug-access pathways are revealed through the open activation gate and fenestrations. Comparison with mutagenesis results provides a structural map of arrhythmia mutations that target the activation and fast inactivation gates. These results give atomic-level insights into molecular events that underlie generation of the action potential, open-state drug block, and fast inactivation of cardiac sodium channels, which initiate the heartbeat.

2228. Emergence of an early SARS-CoV-2 epidemic in the United States.

作者: Mark Zeller.;Karthik Gangavarapu.;Catelyn Anderson.;Allison R Smither.;John A Vanchiere.;Rebecca Rose.;Daniel J Snyder.;Gytis Dudas.;Alexander Watts.;Nathaniel L Matteson.;Refugio Robles-Sikisaka.;Maximilian Marshall.;Amy K Feehan.;Gilberto Sabino-Santos.;Antoinette R Bell-Kareem.;Laura D Hughes.;Manar Alkuzweny.;Patricia Snarski.;Julia Garcia-Diaz.;Rona S Scott.;Lilia I Melnik.;Raphaëlle Klitting.;Michelle McGraw.;Pedro Belda-Ferre.;Peter DeHoff.;Shashank Sathe.;Clarisse Marotz.;Nathan D Grubaugh.;David J Nolan.;Arnaud C Drouin.;Kaylynn J Genemaras.;Karissa Chao.;Sarah Topol.;Emily Spencer.;Laura Nicholson.;Stefan Aigner.;Gene W Yeo.;Lauge Farnaes.;Charlotte A Hobbs.;Louise C Laurent.;Rob Knight.;Emma B Hodcroft.;Kamran Khan.;Dahlene N Fusco.;Vaughn S Cooper.;Phillipe Lemey.;Lauren Gardner.;Susanna L Lamers.;Jeremy P Kamil.;Robert F Garry.;Marc A Suchard.;Kristian G Andersen.
来源: Cell. 2021年184卷19期4939-4952.e15页
The emergence of the COVID-19 epidemic in the United States (U.S.) went largely undetected due to inadequate testing. New Orleans experienced one of the earliest and fastest accelerating outbreaks, coinciding with Mardi Gras. To gain insight into the emergence of SARS-CoV-2 in the U.S. and how large-scale events accelerate transmission, we sequenced SARS-CoV-2 genomes during the first wave of the COVID-19 epidemic in Louisiana. We show that SARS-CoV-2 in Louisiana had limited diversity compared to other U.S. states and that one introduction of SARS-CoV-2 led to almost all of the early transmission in Louisiana. By analyzing mobility and genomic data, we show that SARS-CoV-2 was already present in New Orleans before Mardi Gras, and the festival dramatically accelerated transmission. Our study provides an understanding of how superspreading during large-scale events played a key role during the early outbreak in the U.S. and can greatly accelerate epidemics.

2229. Directed evolution of a family of AAV capsid variants enabling potent muscle-directed gene delivery across species.

作者: Mohammadsharif Tabebordbar.;Kim A Lagerborg.;Alexandra Stanton.;Emily M King.;Simon Ye.;Liana Tellez.;Allison Krunnfusz.;Sahar Tavakoli.;Jeffrey J Widrick.;Kathleen A Messemer.;Emily C Troiano.;Behzad Moghadaszadeh.;Bryan L Peacker.;Krystynne A Leacock.;Naftali Horwitz.;Alan H Beggs.;Amy J Wagers.;Pardis C Sabeti.
来源: Cell. 2021年184卷19期4919-4938.e22页
Replacing or editing disease-causing mutations holds great promise for treating many human diseases. Yet, delivering therapeutic genetic modifiers to specific cells in vivo has been challenging, particularly in large, anatomically distributed tissues such as skeletal muscle. Here, we establish an in vivo strategy to evolve and stringently select capsid variants of adeno-associated viruses (AAVs) that enable potent delivery to desired tissues. Using this method, we identify a class of RGD motif-containing capsids that transduces muscle with superior efficiency and selectivity after intravenous injection in mice and non-human primates. We demonstrate substantially enhanced potency and therapeutic efficacy of these engineered vectors compared to naturally occurring AAV capsids in two mouse models of genetic muscle disease. The top capsid variants from our selection approach show conserved potency for delivery across a variety of inbred mouse strains, and in cynomolgus macaques and human primary myotubes, with transduction dependent on target cell expressed integrin heterodimers.

2230. Museum specimens tell the history of rhinoceroses.

作者: Michael Matschiner.
来源: Cell. 2021年184卷19期4841-4842页
Rhinoceroses are facing an uncertain future due to human-induced population-size reductions. In this issue of Cell, Liu et al. analyze rhinoceros genomes to study their past and find support for an early divergence between African and Asian species, signatures of past hybridization, and evidence of loss of genetic diversity.

2231. Generation and transmission of interlineage recombinants in the SARS-CoV-2 pandemic.

作者: Ben Jackson.;Maciej F Boni.;Matthew J Bull.;Amy Colleran.;Rachel M Colquhoun.;Alistair C Darby.;Sam Haldenby.;Verity Hill.;Anita Lucaci.;John T McCrone.;Samuel M Nicholls.;Áine O'Toole.;Nicole Pacchiarini.;Radoslaw Poplawski.;Emily Scher.;Flora Todd.;Hermione J Webster.;Mark Whitehead.;Claudia Wierzbicki.; .;Nicholas J Loman.;Thomas R Connor.;David L Robertson.;Oliver G Pybus.;Andrew Rambaut.
来源: Cell. 2021年184卷20期5179-5188.e8页
We present evidence for multiple independent origins of recombinant SARS-CoV-2 viruses sampled from late 2020 and early 2021 in the United Kingdom. Their genomes carry single-nucleotide polymorphisms and deletions that are characteristic of the B.1.1.7 variant of concern but lack the full complement of lineage-defining mutations. Instead, the remainder of their genomes share contiguous genetic variation with non-B.1.1.7 viruses circulating in the same geographic area at the same time as the recombinants. In four instances, there was evidence for onward transmission of a recombinant-origin virus, including one transmission cluster of 45 sequenced cases over the course of 2 months. The inferred genomic locations of recombination breakpoints suggest that every community-transmitted recombinant virus inherited its spike region from a B.1.1.7 parental virus, consistent with a transmission advantage for B.1.1.7's set of mutations.

2232. Structural snapshots of TRPV1 reveal mechanism of polymodal functionality.

作者: Kaihua Zhang.;David Julius.;Yifan Cheng.
来源: Cell. 2021年184卷20期5138-5150.e12页
Many transient receptor potential (TRP) channels respond to diverse stimuli and conditionally conduct small and large cations. Such functional plasticity is presumably enabled by a uniquely dynamic ion selectivity filter that is regulated by physiological agents. What is currently missing is a "photo series" of intermediate structural states that directly address this hypothesis and reveal specific mechanisms behind such dynamic channel regulation. Here, we exploit cryoelectron microscopy (cryo-EM) to visualize conformational transitions of the capsaicin receptor, TRPV1, as a model to understand how dynamic transitions of the selectivity filter in response to algogenic agents, including protons, vanilloid agonists, and peptide toxins, permit permeation by small and large organic cations. These structures also reveal mechanisms governing ligand binding substates, as well as allosteric coupling between key sites that are proximal to the selectivity filter and cytoplasmic gate. These insights suggest a general framework for understanding how TRP channels function as polymodal signal integrators.

2233. The interferon landscape along the respiratory tract impacts the severity of COVID-19.

作者: Benedetta Sposito.;Achille Broggi.;Laura Pandolfi.;Stefania Crotta.;Nicola Clementi.;Roberto Ferrarese.;Sofia Sisti.;Elena Criscuolo.;Roberto Spreafico.;Jaclyn M Long.;Alessandro Ambrosi.;Enju Liu.;Vanessa Frangipane.;Laura Saracino.;Sara Bozzini.;Laura Marongiu.;Fabio A Facchini.;Andrea Bottazzi.;Tommaso Fossali.;Riccardo Colombo.;Massimo Clementi.;Elena Tagliabue.;Janet Chou.;Antonio E Pontiroli.;Federica Meloni.;Andreas Wack.;Nicasio Mancini.;Ivan Zanoni.
来源: Cell. 2021年184卷19期4953-4968.e16页
Severe coronavirus disease 2019 (COVID-19) is characterized by overproduction of immune mediators, but the role of interferons (IFNs) of the type I (IFN-I) or type III (IFN-III) families remains debated. We scrutinized the production of IFNs along the respiratory tract of COVID-19 patients and found that high levels of IFN-III, and to a lesser extent IFN-I, characterize the upper airways of patients with high viral burden but reduced disease risk or severity. Production of specific IFN-III, but not IFN-I, members denotes patients with a mild pathology and efficiently drives the transcription of genes that protect against severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). In contrast, compared to subjects with other infectious or noninfectious lung pathologies, IFNs are overrepresented in the lower airways of patients with severe COVID-19 that exhibit gene pathways associated with increased apoptosis and decreased proliferation. Our data demonstrate a dynamic production of IFNs in SARS-CoV-2-infected patients and show IFNs play opposing roles at distinct anatomical sites.

2234. The origins of SARS-CoV-2: A critical review.

作者: Edward C Holmes.;Stephen A Goldstein.;Angela L Rasmussen.;David L Robertson.;Alexander Crits-Christoph.;Joel O Wertheim.;Simon J Anthony.;Wendy S Barclay.;Maciej F Boni.;Peter C Doherty.;Jeremy Farrar.;Jemma L Geoghegan.;Xiaowei Jiang.;Julian L Leibowitz.;Stuart J D Neil.;Tim Skern.;Susan R Weiss.;Michael Worobey.;Kristian G Andersen.;Robert F Garry.;Andrew Rambaut.
来源: Cell. 2021年184卷19期4848-4856页
Since the first reports of a novel severe acute respiratory syndrome (SARS)-like coronavirus in December 2019 in Wuhan, China, there has been intense interest in understanding how severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) emerged in the human population. Recent debate has coalesced around two competing ideas: a "laboratory escape" scenario and zoonotic emergence. Here, we critically review the current scientific evidence that may help clarify the origin of SARS-CoV-2.

2235. SnapShot: Clinical proteomics.

作者: Yi Zhu.;Ruedi Aebersold.;Matthias Mann.;Tiannan Guo.
来源: Cell. 2021年184卷18期4840-4840.e1页
In-depth quantitative proteomic analysis of clinical specimens offers unique and invaluable insights into their protein composition and biochemical state in physiological and pathological conditions. A plethora of methodologies have been developed and customized. Here, we summarize the most common and emerging mass spectrometry (MS)-based workflows. Due to space limitations the overview cannot be complete. To view this SnapShot, open or download the PDF.

2236. Senescence-Induced Vascular Remodeling Creates Therapeutic Vulnerabilities in Pancreas Cancer.

作者: Marcus Ruscetti.;John P Morris.;Riccardo Mezzadra.;James Russell.;Josef Leibold.;Paul B Romesser.;Janelle Simon.;Amanda Kulick.;Yu-Jui Ho.;Myles Fennell.;Jinyang Li.;Robert J Norgard.;John E Wilkinson.;Direna Alonso-Curbelo.;Ramya Sridharan.;Daniel A Heller.;Elisa de Stanchina.;Ben Z Stanger.;Charles J Sherr.;Scott W Lowe.
来源: Cell. 2021年184卷18期4838-4839页

2237. Organs-on-a-chip models for biological research.

作者: Gordana Vunjak-Novakovic.;Kacey Ronaldson-Bouchard.;Milica Radisic.
来源: Cell. 2021年184卷18期4597-4611页
We explore the utility of bioengineered human tissues-individually or connected into physiological units-for biological research. While much smaller and simpler than their native counterparts, these tissues are complex enough to approximate distinct tissue phenotypes: molecular, structural, and functional. Unlike organoids, which form spontaneously and recapitulate development, "organs-on-a-chip" are engineered to display some specific functions of whole organs. Looking back, we discuss the key developments of this emerging technology. Thinking forward, we focus on the challenges faced to fully establish, validate, and utilize the fidelity of these models for biological research.

2238. The immunostimulatory RNA RN7SL1 enables CAR-T cells to enhance autonomous and endogenous immune function.

作者: Lexus R Johnson.;Daniel Y Lee.;Jacqueline S Eacret.;Darwin Ye.;Carl H June.;Andy J Minn.
来源: Cell. 2021年184卷19期4981-4995.e14页
Poor tumor infiltration, development of exhaustion, and antigen insufficiency are common mechanisms that limit chimeric antigen receptor (CAR)-T cell efficacy. Delivery of pattern recognition receptor agonists is one strategy to improve immune function; however, targeting these agonists to immune cells is challenging, and off-target signaling in cancer cells can be detrimental. Here, we engineer CAR-T cells to deliver RN7SL1, an endogenous RNA that activates RIG-I/MDA5 signaling. RN7SL1 promotes expansion and effector-memory differentiation of CAR-T cells. Moreover, RN7SL1 is deployed in extracellular vesicles and selectively transferred to immune cells. Unlike other RNA agonists, transferred RN7SL1 restricts myeloid-derived suppressor cell (MDSC) development, decreases TGFB in myeloid cells, and fosters dendritic cell (DC) subsets with costimulatory features. Consequently, endogenous effector-memory and tumor-specific T cells also expand, allowing rejection of solid tumors with CAR antigen loss. Supported by improved endogenous immunity, CAR-T cells can now co-deploy peptide antigens with RN7SL1 to enhance efficacy, even when heterogenous CAR antigen tumors lack adequate neoantigens.

2239. Spatially organized multicellular immune hubs in human colorectal cancer.

作者: Karin Pelka.;Matan Hofree.;Jonathan H Chen.;Siranush Sarkizova.;Joshua D Pirl.;Vjola Jorgji.;Alborz Bejnood.;Danielle Dionne.;William H Ge.;Katherine H Xu.;Sherry X Chao.;Daniel R Zollinger.;David J Lieb.;Jason W Reeves.;Christopher A Fuhrman.;Margaret L Hoang.;Toni Delorey.;Lan T Nguyen.;Julia Waldman.;Max Klapholz.;Isaac Wakiro.;Ofir Cohen.;Julian Albers.;Christopher S Smillie.;Michael S Cuoco.;Jingyi Wu.;Mei-Ju Su.;Jason Yeung.;Brinda Vijaykumar.;Angela M Magnuson.;Natasha Asinovski.;Tabea Moll.;Max N Goder-Reiser.;Anise S Applebaum.;Lauren K Brais.;Laura K DelloStritto.;Sarah L Denning.;Susannah T Phillips.;Emma K Hill.;Julia K Meehan.;Dennie T Frederick.;Tatyana Sharova.;Abhay Kanodia.;Ellen Z Todres.;Judit Jané-Valbuena.;Moshe Biton.;Benjamin Izar.;Conner D Lambden.;Thomas E Clancy.;Ronald Bleday.;Nelya Melnitchouk.;Jennifer Irani.;Hiroko Kunitake.;David L Berger.;Amitabh Srivastava.;Jason L Hornick.;Shuji Ogino.;Asaf Rotem.;Sébastien Vigneau.;Bruce E Johnson.;Ryan B Corcoran.;Arlene H Sharpe.;Vijay K Kuchroo.;Kimmie Ng.;Marios Giannakis.;Linda T Nieman.;Genevieve M Boland.;Andrew J Aguirre.;Ana C Anderson.;Orit Rozenblatt-Rosen.;Aviv Regev.;Nir Hacohen.
来源: Cell. 2021年184卷18期4734-4752.e20页
Immune responses to cancer are highly variable, with mismatch repair-deficient (MMRd) tumors exhibiting more anti-tumor immunity than mismatch repair-proficient (MMRp) tumors. To understand the rules governing these varied responses, we transcriptionally profiled 371,223 cells from colorectal tumors and adjacent normal tissues of 28 MMRp and 34 MMRd individuals. Analysis of 88 cell subsets and their 204 associated gene expression programs revealed extensive transcriptional and spatial remodeling across tumors. To discover hubs of interacting malignant and immune cells, we identified expression programs in different cell types that co-varied across tumors from affected individuals and used spatial profiling to localize coordinated programs. We discovered a myeloid cell-attracting hub at the tumor-luminal interface associated with tissue damage and an MMRd-enriched immune hub within the tumor, with activated T cells together with malignant and myeloid cells expressing T cell-attracting chemokines. By identifying interacting cellular programs, we reveal the logic underlying spatially organized immune-malignant cell networks.

2240. Rescue of a lysosomal storage disorder caused by Grn loss of function with a brain penetrant progranulin biologic.

作者: Todd Logan.;Matthew J Simon.;Anil Rana.;Gerald M Cherf.;Ankita Srivastava.;Sonnet S Davis.;Ray Lieh Yoon Low.;Chi-Lu Chiu.;Meng Fang.;Fen Huang.;Akhil Bhalla.;Ceyda Llapashtica.;Rachel Prorok.;Michelle E Pizzo.;Meredith E K Calvert.;Elizabeth W Sun.;Jennifer Hsiao-Nakamoto.;Yashas Rajendra.;Katrina W Lexa.;Devendra B Srivastava.;Bettina van Lengerich.;Junhua Wang.;Yaneth Robles-Colmenares.;Do Jin Kim.;Joseph Duque.;Melina Lenser.;Timothy K Earr.;Hoang Nguyen.;Roni Chau.;Buyankhishig Tsogtbaatar.;Ritesh Ravi.;Lukas L Skuja.;Hilda Solanoy.;Howard J Rosen.;Bradley F Boeve.;Adam L Boxer.;Hilary W Heuer.;Mark S Dennis.;Mihalis S Kariolis.;Kathryn M Monroe.;Laralynne Przybyla.;Pascal E Sanchez.;Rene Meisner.;Dolores Diaz.;Kirk R Henne.;Ryan J Watts.;Anastasia G Henry.;Kannan Gunasekaran.;Giuseppe Astarita.;Jung H Suh.;Joseph W Lewcock.;Sarah L DeVos.;Gilbert Di Paolo.
来源: Cell. 2021年184卷18期4651-4668.e25页
GRN mutations cause frontotemporal dementia (GRN-FTD) due to deficiency in progranulin (PGRN), a lysosomal and secreted protein with unclear function. Here, we found that Grn-/- mice exhibit a global deficiency in bis(monoacylglycero)phosphate (BMP), an endolysosomal phospholipid we identified as a pH-dependent PGRN interactor as well as a redox-sensitive enhancer of lysosomal proteolysis and lipolysis. Grn-/- brains also showed an age-dependent, secondary storage of glucocerebrosidase substrate glucosylsphingosine. We investigated a protein replacement strategy by engineering protein transport vehicle (PTV):PGRN-a recombinant protein linking PGRN to a modified Fc domain that binds human transferrin receptor for enhanced CNS biodistribution. PTV:PGRN rescued various Grn-/- phenotypes in primary murine macrophages and human iPSC-derived microglia, including oxidative stress, lysosomal dysfunction, and endomembrane damage. Peripherally delivered PTV:PGRN corrected levels of BMP, glucosylsphingosine, and disease pathology in Grn-/- CNS, including microgliosis, lipofuscinosis, and neuronal damage. PTV:PGRN thus represents a potential biotherapeutic for GRN-FTD.
共有 2640 条符合本次的查询结果, 用时 4.3317839 秒