The structural basis for deadenylation by the CCR4-NOT complex.
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The structural basis for the interaction between the CAF1 nuclease and the NOT1 scaffold of the human CCR4-NOT deadenylase complexThe anti-proliferative activity of BTG/TOB proteins is mediated via the Caf1a (CNOT7) and Caf1b (CNOT8) deadenylase subunits of the Ccr4-not complexCnot1, Cnot2, and Cnot3 maintain mouse and human ESC identity and inhibit extraembryonic differentiationNOT10 and C2orf29/NOT11 form a conserved module of the CCR4-NOT complex that docks onto the NOT1 N-terminal domainThe role of the CNOT1 subunit of the CCR4-NOT complex in mRNA deadenylation and cell viabilityCrystal structure of the human CNOT6L nuclease domain reveals strict poly(A) substrate specificityStructural basis for inhibition of the deadenylase activity of human CNOT6LhCAF1/CNOT7 regulates interferon signalling by targeting STAT1.Insights into the structure and architecture of the CCR4-NOT complexNovel roles of the multi-functional CCR4-NOT complex in post-transcriptional regulation.Uncoupling of mRNA synthesis and degradation impairs adaptation to host temperature in Cryptococcus neoformansMultifunctional roles of the mammalian CCR4-NOT complex in physiological phenomena.Interaction of NANOS2 and NANOS3 with different components of the CNOT complex may contribute to the functional differences in mouse male germ cells.A fluorescence-based assay suitable for quantitative analysis of deadenylase enzyme activity.Cantharidin represses invasion of pancreatic cancer cells through accelerated degradation of MMP2 mRNA.Interaction between NANOS2 and the CCR4-NOT deadenylation complex is essential for male germ cell development in mouse.CNOT3 suppression promotes necroptosis by stabilizing mRNAs for cell death-inducing proteinsFunction of Nanos1 gene in the development of reproductive organs of Schistosoma japonicum.HIPK family kinases bind and regulate the function of the CCR4-NOT complex.Stability of mRNA influences osteoporotic bone mass via CNOT3.Deadenylation of cytoplasmic mRNA by the mammalian Ccr4-Not complex.Identification of Ccr4-not complex components as regulators of transition from partial to genuine induced pluripotent stem cells.The Not4 E3 ligase and CCR4 deadenylase play distinct roles in protein quality control.The Ccr4-Not Complex: Architecture and Structural Insights.
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P2860
The structural basis for deadenylation by the CCR4-NOT complex.
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article científic
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article scientifique
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articolo scientifico
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artigo científico
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bilimsel makale
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scientific article published on May 2010
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
The structural basis for deadenylation by the CCR4-NOT complex.
@en
The structural basis for deadenylation by the CCR4-NOT complex.
@nl
type
label
The structural basis for deadenylation by the CCR4-NOT complex.
@en
The structural basis for deadenylation by the CCR4-NOT complex.
@nl
prefLabel
The structural basis for deadenylation by the CCR4-NOT complex.
@en
The structural basis for deadenylation by the CCR4-NOT complex.
@nl
P2860
P1433
P1476
The structural basis for deadenylation by the CCR4-NOT complex.
@en
P2093
Mark Bartlam
Tadashi Yamamoto
P2860
P2888
P304
P356
10.1007/S13238-010-0060-8
P577
2010-05-01T00:00:00Z