The Smads

被引:24
作者
Liliana Attisano
Si Tuen Lee-Hoeflich
机构
[1] Department of Anatomy and Cell Biology,Department of Medical Biophysics
[2] University of Toronto,undefined
关键词
Primary Pulmonary Hypertension; Juvenile Polyposis; Smad Gene; Juvenile Polyposis Syndrome; Smad5 Null Mouse;
D O I
10.1186/gb-2001-2-8-reviews3010
中图分类号
学科分类号
摘要
The large transforming growth factor-β (TGFβ) superfamily of secreted proteins regulate the growth, development and differentiation of cells in diverse organisms, including nematode worms, flies, mice and humans. Signals are initiated upon binding of TGFβ superfamily members to cell-surface serine/threonine kinase receptors and are then propagated by the intracellular mediators known as Smads. Activation of Smads results in their translocation from the cytoplasm into the nucleus, where they activate or repress transcription together with transcription factors so as to regulate target gene expression. Most Smads consist of two conserved domains. Mad homology (MH) domains I and 2, which are separated by a non-conserved linker region. These domains lack enzymatic activity and, instead, Smads mediate their effects through protein-protein and protein-DNA interactions. Targeted disruption of Smad genes in mice has revealed their importance in embryonic development, and a tumor-suppressor role for Smads in human cancers has been described. Smads therefore play an essential role in mediating TGFβ-superfamily signals in development and disease.
引用
收藏
相关论文
共 226 条
  • [11] Derynck R(2000)Crystal structure of a Smad MH1 domain bound to DNA: insights on DNA binding in TGF-beta signaling. Proc Natl Acad Sci USA 97 7853-7858
  • [12] Padgett RW(2001)A distinct nuclear localization signal in the N terminus of Smad3 determines its ligand-induced translocation. Mol Biol Cell 12 1079-1091
  • [13] de Caestecker MP(2000)Transforming Growth Factor-β induces nuclear import of Smad3 in an importin-β and Ran-dependent manner. Nat Cell Biol 2 559-562
  • [14] Piek E(1997)The nuclear import function of Smad2 is masked by SARA and unmasked by TGFβ-dependent phosphorylation. Nature 388 87-93
  • [15] Roberts AB(2000)A structural basis for mutational inactivation of the tumour suppressor Smad4. Science 287 92-97
  • [16] Raftery LA(1998)Structural basis of Smad2 recognition by the Smad anchor for receptor activation. Genes Dev 12 2144-2152
  • [17] Sutherland DJ(2000)Determinants of specificity in TGF-β signal transduction. Mol Cell Biol 20 9041-9054
  • [18] Shi Y(2000)Transforming growth factor β-independent shuttling of Smad4 between the cytoplasm and nucleus. EMBO Rep 1 176-182
  • [19] Shi Y(1999)Regulation of intracellular dynamics of Smad4 by its leucine-rich nuclear export signal. Nature 400 687-693
  • [20] Wang YF(2001)A SMAD ubiquitin ligase targets the BMP pathway and affects embryonic pattern formation. Nat Cell Biol 3 587-595