Schreiner Silke, Cossais François, Fischer Kerstin, Scholz Stefanie, Bösl Michael R, Holtmann Bettina, Sendtner Michael, Wegner Michael
Institut für Biochemie, Emil-Fischer-Zentrum, Universität Erlangen, Fahrstrasse 17, D-91054 Erlangen, Germany.
Development. 2007 Sep;134(18):3271-81. doi: 10.1242/dev.003350. Epub 2007 Aug 15.
The transcription factor Sox10 regulates early neural crest development, specification of neural crest-derived lineages and terminal differentiation of oligodendrocytes in the central nervous system. Here, we generated two novel hypomorphic Sox10 alleles in the mouse. Mutant mice either expressed a Sox10 protein with a triple alanine substitution in the dimerization domain, or a Sox10 protein with a deletion in the central portion that we define as a cell-specific transactivation domain. Phenotypic analysis revealed important roles for a functional dimerization domain and the newly defined novel transactivation domain in melanocyte and enteric nervous system development, whereas early neural crest development and oligodendrocyte differentiation were surprisingly little disturbed in both mutants. Unique requirements were additionally detected for the novel transactivation domain in satellite glia differentiation and during Schwann cell myelination, whereas DNA-dependent dimerization was needed for immature Schwann cells to enter the promyelinating stage. These two hypomorphic alleles thus uncover novel functions of Sox10 in satellite glia and Schwann cells during late developmental stages and reveal important developmental differences between these two types of peripheral glia and oligodendrocytes regarding their reliance on Sox10.
转录因子Sox10调节早期神经嵴发育、神经嵴衍生谱系的特化以及中枢神经系统中少突胶质细胞的终末分化。在此,我们在小鼠中产生了两个新的Sox10低表达等位基因。突变小鼠要么表达在二聚化结构域有三个丙氨酸替代的Sox10蛋白,要么表达在我们定义为细胞特异性反式激活结构域的中央部分有缺失的Sox10蛋白。表型分析揭示了功能性二聚化结构域和新定义的反式激活结构域在黑素细胞和肠神经系统发育中的重要作用,而在这两种突变体中,早期神经嵴发育和少突胶质细胞分化出人意料地几乎未受干扰。此外,在卫星神经胶质细胞分化和施万细胞髓鞘形成过程中检测到对新反式激活结构域的独特需求,而未成熟施万细胞进入前髓鞘形成阶段需要依赖DNA的二聚化。因此,这两个低表达等位基因揭示了Sox10在发育后期卫星神经胶质细胞和施万细胞中的新功能,并揭示了这两种外周神经胶质细胞与少突胶质细胞在依赖Sox10方面重要的发育差异。