The Yin and Yang of Sox Proteins: Activation and Repression in Development and Disease

被引:86
作者
Chew, Li-Jin [1 ]
Gallo, Vittorio [1 ]
机构
[1] Childrens Natl Med Ctr, Ctr Res Neurosci, Childrens Res Inst, Washington, DC 20010 USA
关键词
HMG; SOX; development; transcription; Wnt; interactions; TRANSCRIPTION FACTOR; NEURAL CREST; BETA-CATENIN; DOWN-REGULATION; CHONDROCYTE DIFFERENTIATION; OLIGODENDROCYTE DEVELOPMENT; REGULATES CHONDROGENESIS; MOLECULAR-MECHANISM; GENE-EXPRESSION; MOUSE;
D O I
10.1002/jnr.22128
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The general view of development consists of the acquisition of committed/differentiated phenotypes following a period of self-renewal and progenitor expansion. Lineage specification and progression are phenomena of antagonistic events, silencing tissue-specific gene expression in precursors to allow self-renewal and multipotentiality, and subsequently suppressing proliferation and embryonic gene expression to promote the restricted expression of tissue-specific genes during maturation. The high mobility group-containing Sox family of transcription factors constitutes one of the earliest classes of genes to be expressed during embryonic development. These proteins not only are indispensable for progenitor cell specification but also are critical for terminal differentiation of multiple cell types in a wide variety of lineages. Sox transcription factors are now known to induce or repress progenitor cell characteristics and cell proliferation or to activate the expression of tissue-specific genes. Sox proteins fulfill their diverse functions in developmental regulation by distinct molecular mechanisms. Not surprisingly, in addition to DNA binding and bending, Sox transcription factors also interact with different protein partners to function as coactivators or corepressors of downstream target genes. Here we seek to provide an overview of the current knowledge of Sox gene functional mechanisms, in an effort to understand their roles in both development and pathology. (C) 2009 Wiley-Liss, Inc.
引用
收藏
页码:3277 / 3287
页数:11
相关论文
共 111 条
[1]   The transcrintion factor Sox9 has essential roles in successive steps of the chondrocyte differentiation pathway and is required for expression of Sox5 and Sox6 [J].
Akiyama, H ;
Chaboissier, MC ;
Martin, JF ;
Schedl, A ;
de Crombrugghe, B .
GENES & DEVELOPMENT, 2002, 16 (21) :2813-2828
[2]   Osteo-chondroprogenitor cells are derived from Sox9 expressing precursors [J].
Akiyama, H ;
Kim, JE ;
Nakashima, K ;
Balmes, G ;
Iwai, N ;
Deng, JM ;
Zhang, ZP ;
Martin, JF ;
Behringer, RR ;
Nakamura, T ;
de Crombrugghe, B .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2005, 102 (41) :14665-14670
[3]   Interactions between Sox9 and β-catenin control chondrocyte differentiation [J].
Akiyama, H ;
Lyons, JP ;
Mori-Akiyama, Y ;
Yang, XH ;
Zhang, R ;
Zhang, ZP ;
Deng, JM ;
Taketo, MM ;
Nakamura, T ;
Behringer, RR ;
McCrea, PD ;
de Crombrugghe, B .
GENES & DEVELOPMENT, 2004, 18 (09) :1072-1087
[4]   Role of Sox2 in the development of the mouse neocortex [J].
Bani-Yaghoub, Mahmud ;
Tremblay, Roger G. ;
Lei, Joy X. ;
Zhang, Dongling ;
Zurakowski, Bogdan ;
Sandhu, Jagdeep K. ;
Smith, Brandon ;
Ribecco-Lutkiewicz, Maria ;
Kennedy, Jessica ;
Walker, P. Roy ;
Sikorska, Marianna .
DEVELOPMENTAL BIOLOGY, 2006, 295 (01) :52-66
[5]   Oligodendroglial-specific transcriptional factor SOX10 is ubiquitously expressed in human gliomas [J].
Bannykh, SI ;
Stolt, CC ;
Kim, J ;
Perry, A ;
Wegner, M .
JOURNAL OF NEURO-ONCOLOGY, 2006, 76 (02) :115-127
[6]   Sox9 regulates cell proliferation and is required for Paneth cell differentiation in the intestinal epithelium [J].
Bastide, Pauline ;
Darido, Charbel ;
Pannequiri, Julie ;
Kist, Ralf ;
Robine, Sylvie ;
Marty-Double, Christiane ;
Bibeau, Frederic ;
Scherer, Gerd ;
Joubert, Dominique ;
Hollande, Frederic ;
Blache, Philippe ;
Jay, Philippe .
JOURNAL OF CELL BIOLOGY, 2007, 178 (04) :635-648
[7]   The establishment of neuronal properties is controlled by Sox4 and Sox11 [J].
Bergsland, Maria ;
Werme, Martin ;
Malewicz, Michal ;
Perlmann, Thomas ;
Muhr, Jonas .
GENES & DEVELOPMENT, 2006, 20 (24) :3475-3486
[8]  
Bergstrom DE, 2000, GENESIS, V28, P111, DOI 10.1002/1526-968X(200011/12)28:3/4<111::AID-GENE40>3.0.CO
[9]  
2-5
[10]   Interaction among SOX10 PAX3 and MITF, three genes altered in Waardenburg syndrome [J].
Bondurand, N ;
Pingault, V ;
Goerich, DE ;
Lemort, N ;
Sock, E ;
Le Caignec, C ;
Wegner, M ;
Goossens, M .
HUMAN MOLECULAR GENETICS, 2000, 9 (13) :1907-1917