Smad transcription factors
Транскрипционные факторы Smad
2005-12-01
SCID: 54.1/mva6bt7a
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Smad activation and deactivationSmad transcription factorsSmad-dependent transcriptional programsTGF-beta signaling pathwaynucleocytoplasmic dynamics
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Abstract (AI)
Smad transcription factors lie at the core of one of the most versatile cytokine signaling pathways in metazoan biology-the transforming growth factor-beta (TGFbeta) pathway. Recent progress has shed light into the processes of Smad activation and deactivation, nucleocytoplasmic dynamics, and assembly of transcriptional complexes. A rich repertoire of regulatory devices exerts control over each step of the Smad pathway. This knowledge is enabling work on more complex questions about the organization, integration, and modulation of Smad-dependent transcriptional programs. We are beginning to uncover self-enabled gene response cascades, graded Smad response mechanisms, and Smad-dependent synexpression groups. Our growing understanding of TGFbeta signaling through the Smad pathway provides general principles for how animal cells translate complex inputs into concrete behavior.
Key Findings
1
Multiple regulatory mechanisms control every major step of the Smad signaling pathway.
2
Recent advances have clarified Smad activation and deactivation, nucleocytoplasmic dynamics, and assembly of Smad-containing transcriptional complexes.
3
Smad transcription factors are central mediators of the versatile transforming growth factor-beta signaling pathway in metazoans.
4
Smad-dependent transcription involves self-enabled gene-response cascades, graded response mechanisms, and coordinated synexpression groups.
5
Understanding Smad signaling is revealing general principles by which animal cells integrate complex inputs into specific behavioral responses.
Research Object
Smad transcription factors in the transforming growth factor-beta (TGFβ) signaling pathway
Research Subject
Smad activation and deactivation, nucleocytoplasmic dynamics, transcriptional complex assembly, and regulation of Smad-dependent transcriptional programs
Publication Details
Publication Date
2005-12-01
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