Literature DB >> 19114992

Nucleocytoplasmic shuttling of Smad proteins.

Caroline S Hill1.   

Abstract

Nuclear accumulation of active Smad complexes is crucial for transduction of transforming growth factor beta (TGF-beta)-superfamily signals from transmembrane receptors into the nucleus. It is now clear that the nucleocytoplasmic distributions of Smads, in both the absence and the presence of a TGF-beta-superfamily signal, are not static, but instead the Smads are continuously shuttling between the nucleus and the cytoplasm in both conditions. This article presents the evidence for continuous nucleocytoplasmic shuttling of Smads. It then reviews different mechanisms that have been proposed to mediate Smad nuclear import and export, and discusses how the Smad steady-state distributions in the absence and the presence of a TGF-beta-superfamily signal are established. Finally, the biological relevance of continuous nucleocytoplasmic shuttling for signaling by TGF-beta superfamily members is discussed.

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Year:  2009        PMID: 19114992     DOI: 10.1038/cr.2008.325

Source DB:  PubMed          Journal:  Cell Res        ISSN: 1001-0602            Impact factor:   25.617


  98 in total

1.  PPM1A dephosphorylates RanBP3 to enable efficient nuclear export of Smad2 and Smad3.

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Journal:  EMBO Rep       Date:  2011-10-28       Impact factor: 8.807

2.  Nucleolin promotes TGF-β signaling initiation via TGF-β receptor I in glioblastoma.

Authors:  Shunzeng Lv; Jie Zhang; Mingzhi Han; Weiping Wang; Ya Zhang; Dongxiao Zhuang; Ranran Shi; Ruixiang Bian; Chengjun Yao
Journal:  J Mol Neurosci       Date:  2014-04-01       Impact factor: 3.444

3.  Transcription factor Smad3 is required for the inhibition of adipogenesis by retinoic acid.

Authors:  François Marchildon; Catherine St-Louis; Rahima Akter; Victoria Roodman; Nadine L Wiper-Bergeron
Journal:  J Biol Chem       Date:  2010-02-23       Impact factor: 5.157

4.  Nucleocytoplasmic Shuttling of the Mechanosensitive Transcription Factors MRTF and YAP /TAZ.

Authors:  Michael Kofler; András Kapus
Journal:  Methods Mol Biol       Date:  2021

Review 5.  The microRNA networks of TGFβ signaling in cancer.

Authors:  V P Sivadas; S Kannan
Journal:  Tumour Biol       Date:  2013-12-10

Review 6.  Targeting the transforming growth factor-beta signaling pathway in human cancer.

Authors:  Nagathihalli S Nagaraj; Pran K Datta
Journal:  Expert Opin Investig Drugs       Date:  2010-01       Impact factor: 6.206

7.  Role of substratum stiffness in modulating genes associated with extracellular matrix and mechanotransducers YAP and TAZ.

Authors:  Vijay Krishna Raghunathan; Joshua T Morgan; Britta Dreier; Christopher M Reilly; Sara M Thomasy; Joshua A Wood; Irene Ly; Binh C Tuyen; Marissa Hughbanks; Christopher J Murphy; Paul Russell
Journal:  Invest Ophthalmol Vis Sci       Date:  2013-01-14       Impact factor: 4.799

Review 8.  Regulation of the ovarian reserve by members of the transforming growth factor beta family.

Authors:  Stephanie A Pangas
Journal:  Mol Reprod Dev       Date:  2012-09-11       Impact factor: 2.609

9.  P68 RNA helicase is a nucleocytoplasmic shuttling protein.

Authors:  Haizhen Wang; Xueliang Gao; Yun Huang; Jenny Yang; Zhi-Ren Liu
Journal:  Cell Res       Date:  2009-09-29       Impact factor: 25.617

10.  TGF-beta signalling is regulated by Schnurri-2-dependent nuclear translocation of CLIC4 and consequent stabilization of phospho-Smad2 and 3.

Authors:  Anjali Shukla; Mariam Malik; Christophe Cataisson; Yan Ho; Travis Friesen; Kwang S Suh; Stuart H Yuspa
Journal:  Nat Cell Biol       Date:  2009-05-17       Impact factor: 28.824

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