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共有 136985 条符合本次的查询结果, 用时 1.9722689 秒

241. Single particle acts as a quantum computer to simulate molecules.

作者: Davide Castelvecchi.
来源: Nature. 2025年641卷8065期1081-1082页

242. Daily briefing: Yes, you can find love during your PhD.

作者: Jacob Smith.
来源: Nature. 2025年

243. Can AI help us talk to dolphins? The race is now on.

作者: Mariana Lenharo.
来源: Nature. 2025年

244. Atacama sunshine helps to pull water from thin air.

来源: Nature. 2025年641卷8064期825页

245. Can NIH-funded research on racism and health survive Trump's cuts?

作者: Smriti Mallapaty.
来源: Nature. 2025年

246. US brain drain: Nature's guide to the initiatives drawing scientists abroad.

作者: Nisha Gaind.;Rachel Fieldhouse.;Miryam Naddaf.;Giorgia Guglielmi.
来源: Nature. 2025年641卷8065期1077-1079页

247. Powerful CRISPR system inserts whole gene into human DNA.

作者: Elie Dolgin.
来源: Nature. 2025年

248. The world's richest people have an outsized role in climate extremes.

来源: Nature. 2025年641卷8064期825页

249. Neurocircuitry basis of motor cortex-related analgesia as an emerging approach for chronic pain management.

作者: Yang Bai.;Kevin Pacheco-Barrios.;Niels Pacheco-Barrios.;Guobiao Liang.;Felipe Fregni.
来源: Nat Ment Health. 2024年2卷5期496-513页
Aside from movement initiation and control, the primary motor cortex (M1) has been implicated in pain modulation mechanisms. A large body of clinical data has demonstrated that stimulation and behavioral activation of M1 result in clinically important pain relief in patients with specific chronic pain syndromes. However, despite its clinical importance, the full range of circuits for motor cortex-related analgesia (MCRA) remains an enigma. This review draws on insights from experimental and clinical data and provides an overview of the neurobiological mechanisms of MCRA, with particular emphasis on its neurocircuitry basis. Based on structural and functional connections of the M1 within the pain connectome, neural circuits for MCRA are discussed at different levels of the neuroaxis, specifically, the endogenous pain modulation system, the thalamus, the extrapyramidal system, non-noxious somatosensory systems, and cortico-limbic pain signatures. We believe that novel insights from this review will expedite our understanding of M1-induced pain modulation and offer hope for successful mechanism-based refinements of this interventional approach in chronic pain management.

250. How CAR-T cancer therapies could harm the brain.

来源: Nature. 2025年641卷8064期825页

251. World's first personalized CRISPR therapy given to baby with genetic disease.

作者: Heidi Ledford.
来源: Nature. 2025年

252. Stem cells coaxed into most advanced amniotic sacs ever grown in the lab.

作者: Smriti Mallapaty.
来源: Nature. 2025年

253. AI language models develop social norms like groups of people.

作者: Rachel Fieldhouse.
来源: Nature. 2025年

254. Seeking a job in science? How hiring practices across industry and academia compare.

作者: Julie Gould.
来源: Nature. 2025年

255. Daily briefing: These award-winning photos show scientists at work.

作者: Flora Graham.
来源: Nature. 2025年

256. Daily briefing: Five secrets of super-healthy seniors.

作者: Flora Graham.
来源: Nature. 2025年

257. PhD students in STEM: Nature wants to hear from you.

作者: Linda Nordling.
来源: Nature. 2025年

258. Ku limits RNA-induced innate immunity to allow Alu-expansion in primates.

作者: Yimeng Zhu.;Angelina Li.;Suvrajit Maji.;Brian J Lee.;Sophie M Korn.;Jake A Gertie.;Tyler J Dorrity.;Jianhua Wang.;Kyle J Wang.;Amandine Pelletier.;Daniel F Moakley.;Rachel D Kelly.;Antony B Holmes.;Raul Rabadan.;David R Edgell.;Caroline Schild Poulter.;Mauro Modesti.;Anna-Lena Steckelberg.;Eric A Hendrickson.;Hachung Chung.;Chaolin Zhang.;Shan Zha.
来源: Nature. 2025年
Ku70 and Ku80 form Ku, a ring-shaped complex that initiates the non-homologous end-joining (NHEJ) DNA repair pathway.1 Ku binds to double-stranded DNA (dsDNA) ends and recruits other NHEJ factors (e.g., LIG4, DNA-PKcs). While Ku can bind to double-stranded RNA (dsRNA)2 and trap mutated-DNA-PKcs on ribosomal RNA (rRNA),3,4 the physiological role on Ku-RNA interaction in otherwise wildtype cells remains unclear. Intriguingly, Ku is dispensable for murine development5,6 but essential in human cells.7 Despite similar genome sizes, human cells express ~100-fold more Ku than mouse cells, implying functions beyond NHEJ - possibly through a dose-sensitive interaction with dsRNA, which binds Ku 10~100 times weaker than dsDNA.2,8 Investigating Ku's essentiality in human cells, we found that Ku-depletion - unlike LIG4 - induces profound interferon (IFN) and NF-kB signaling via dsRNA-sensor MDA5/RIG-I and MAVS. Prolonged Ku-degradation further activates other dsRNA sensors, especially PKR (suppressing translation) and OAS/RNaseL (cleaving rRNA), leading to growth arrest and cell death. MAVS, RIG-I, or MDA5 knockouts suppressed IFN signaling and, like PKR knockouts, all partially rescued Ku-depleted human cells. Ku-irCLIP analyses revealed Ku binding to diverse dsRNA, predominantly stem-loops in primate-specific antisense Alu elements9 in introns and 3'-UTRs. Ku expression rose sharply in higher primates, correlating tightly with Alu-expansion (r = 0.94/0.95). Thus, Ku plays a vital role in accommodating Alu-expansion in primates by limiting dsRNA-induced innate immunity, explaining both Ku's elevated expression and its essentiality in human cells.

259. Dear editors, your publication delays are damaging our careers.

作者: Chia-Hsuan Hsu.
来源: Nature. 2025年

260. DeepMind unveils 'spectacular' general-purpose science AI.

作者: Elizabeth Gibney.
来源: Nature. 2025年641卷8064期827-828页
共有 136985 条符合本次的查询结果, 用时 1.9722689 秒