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共有 2669 条符合本次的查询结果, 用时 1.2982045 秒

2441. Developmental programming of the shoot meristem.

作者: I M Sussex.
来源: Cell. 1989年56卷2期225-9页

2442. Signals and transduction mechanisms for activation of plant defenses against microbial attack.

作者: C J Lamb.;M A Lawton.;M Dron.;R A Dixon.
来源: Cell. 1989年56卷2期215-24页

2443. Rhizobium-legume nodulation: life together in the underground.

作者: S R Long.
来源: Cell. 1989年56卷2期203-14页

2444. Transfer and function of T-DNA genes from agrobacterium Ti and Ri plasmids in plants.

作者: P Zambryski.;J Tempe.;J Schell.
来源: Cell. 1989年56卷2期193-201页

2445. Molecular biology of plant mitochondria.

作者: C S Levings.;G G Brown.
来源: Cell. 1989年56卷2期171-9页

2446. Chloroplast gene expression: how plants turn their plastids on.

作者: W Gruissem.
来源: Cell. 1989年56卷2期161-70页

2447. Regulation of gene expression during plant embryogenesis.

作者: R B Goldberg.;S J Barker.;L Perez-Grau.
来源: Cell. 1989年56卷2期149-60页

2448. Cut, paste, and save: new approaches to altering specific genes in mice.

作者: M A Frohman.;G R Martin.
来源: Cell. 1989年56卷2期145-7页

2449. About maize transposable elements and development.

作者: N V Fedoroff.
来源: Cell. 1989年56卷2期181-91页

2450. When the products of oncogenes and anti-oncogenes meet.

作者: M R Green.
来源: Cell. 1989年56卷1期1-3页

2451. ras GTPase activating protein: signal transmitter and signal terminator.

作者: F McCormick.
来源: Cell. 1989年56卷1期5-8页
Evidence that GAP is an effector of ras action can be summarized as follows: GAP interacts at a site on p21 defined genetically as the effector binding site. Regions of p21 that are nonessential for biological activity are nonessential for GAP interaction. GAP interacts with all known types of p21. (Upstream factors are expected to be specific for individual types). GAP interacts with p21 proteins (normal and mutant) in a GTP-dependent fashion. None of these constitute proof. It remains possible that GAP simply regulates p21-GTP levels, and binds to the same site as the true effector without transmitting a downstream signal. If indeed GAP mediates ras action, the question immediately arises as to the biochemical function of GAP itself. The requirement of ras proteins for membrane localization to exert their effects may be a valuable clue in the search for this function. Perhaps GAP is an enzyme (or is bound to an enzyme) that acts on membrane components in a p21-GTP-dependent manner and in doing so transmits signals to other downstream effectors. The ability of GAP to interact with many members of the ras family would allow many upstream signals to feed into this downstream pathway. Clearly, proof (or disproof) that GAP is downstream of ras is the next step toward clarification of this aspect of ras action; identification of biochemical activities associated with GAP (or the true ras effector) will, we hope, follow soon.

2452. Voltage-sensitive ion channels.

作者: L Y Jan.;Y N Jan.
来源: Cell. 1989年56卷1期13-25页

2453. Unraveling of mitotic control mechanisms.

作者: W G Dunphy.;J W Newport.
来源: Cell. 1988年55卷6期925-8页

2454. ColE1 replication control circuitry: sense from antisense.

作者: B Polisky.
来源: Cell. 1988年55卷6期929-32页

2455. tRNA identity: a hair of the dogma that bit us.

作者: M Yarus.
来源: Cell. 1988年55卷5期739-41页

2456. Integration host factor: a protein for all reasons.

作者: D I Friedman.
来源: Cell. 1988年55卷4期545-54页

2457. Homeobox proteins as sequence-specific transcription factors.

作者: M Levine.;T Hoey.
来源: Cell. 1988年55卷4期537-40页

2458. Fos and Jun: the AP-1 connection.

作者: T Curran.;B R Franza.
来源: Cell. 1988年55卷3期395-7页

2459. Diversity in the lipocortin/calpactin family.

作者: M R Crompton.;S E Moss.;M J Crumpton.
来源: Cell. 1988年55卷1期1-3页

2460. A model for initiation at origins of DNA replication.

作者: D Bramhill.;A Kornberg.
来源: Cell. 1988年54卷7期915-8页
Many prokaryotic origins resemble E. coli oriC in possessing essential AT-rich sequences, tandemly repeated. The role of these repeats may be in the initial opening of the duplex by the initiator protein, as has been found for the 13-mers in oriC and is implied for the 11-mers of the lambda origin. Regulatory influences on the effective action of the initiator protein of E. coli (dnaA protein) include transcriptional activation of the origin, nucleotide binding and membrane attachment of the protein, and interactions leading to the introduction of helicases to start replication forks.
共有 2669 条符合本次的查询结果, 用时 1.2982045 秒