Nucleocytoplasmic shuttling of Smad proteins

被引:193
作者
Hill, Caroline S. [1 ]
机构
[1] Canc Res UK London Res Inst, Lab Dev Signalling, London WC2A 3PX, England
关键词
Smad; nuclear import and export; TGF-beta-superfamily signaling; karyopherin; nucleocytoplasmic shuttling; NUCLEAR-LOCALIZATION SIGNAL; TGF-BETA RECEPTOR; I RECEPTOR; EXPORT; IMPORT; DOMAIN; DYNAMICS; IDENTIFICATION; PHOSPHATASES; INHIBITOR;
D O I
10.1038/cr.2008.325
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
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.
引用
收藏
页码:36 / 46
页数:11
相关论文
共 52 条
[1]   Kinesin-mediated transport of Smad2 is required for signaling in response to TGF-β Ligands [J].
Batut, Julie ;
Howell, Michael ;
Hill, Caroline S. .
DEVELOPMENTAL CELL, 2007, 12 (02) :261-274
[2]   Cancer-associated transforming growth factor β type II receptor gene mutant causes activation of bone morphogenic protein-Smads and invasive phenotype [J].
Bharathy, Savita ;
Xie, Wen ;
Yingling, Jonathan M. ;
Reiss, Michael .
CANCER RESEARCH, 2008, 68 (06) :1656-1666
[3]   Nuclear targeting of transforming growth factor-b-activated smad complexes [J].
Chen, HB ;
Rud, JG ;
Lin, K ;
Xu, L .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2005, 280 (22) :21329-21336
[4]   Identification of phosphatases for Smad in the BMP/DPP pathway [J].
Chen, HB ;
Shen, JL ;
Ip, YT ;
Xu, L .
GENES & DEVELOPMENT, 2006, 20 (06) :648-653
[5]   Using viral species specificity to define a critical protein/RNA interaction surface [J].
Coburn, GA ;
Wiegand, HL ;
Kang, YB ;
Ho, DN ;
Georgiadis, MM ;
Cullen, BR .
GENES & DEVELOPMENT, 2001, 15 (10) :1194-1205
[6]   Transforming Growth Factor β-Induced Smad1/5 Phosphorylation in Epithelial Cells Is Mediated by Novel Receptor Complexes and Is Essential for Anchorage-Independent Growth [J].
Daly, Amanda C. ;
Randall, Rebecca A. ;
Hill, Caroline S. .
MOLECULAR AND CELLULAR BIOLOGY, 2008, 28 (22) :6889-6902
[7]   Molecular and functional consequences of Smad4 C-terminal missense mutations in colorectal tumour cells [J].
De Bosscher, K ;
Hill, CS ;
Nicolás, FJ .
BIOCHEMICAL JOURNAL, 2004, 379 :209-216
[8]   Smurf1 interacts with transforming growth factor-β type I receptor through Smad7 and induces receptor degradation [J].
Ebisawa, T ;
Fukuchi, M ;
Murakami, G ;
Chiba, T ;
Tanaka, K ;
Imamura, T ;
Miyazono, K .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2001, 276 (16) :12477-12480
[9]   CRM1 is an export receptor for leucine-rich nuclear export signals [J].
Fornerod, M ;
Ohno, M ;
Yoshida, M ;
Mattaj, IW .
CELL, 1997, 90 (06) :1051-1060
[10]   Transport between the cell nucleus and the cytoplasm [J].
Görlich, D ;
Kutay, U .
ANNUAL REVIEW OF CELL AND DEVELOPMENTAL BIOLOGY, 1999, 15 :607-660