Nietfeld W, Conrad S, van Wijk I, Giltay R, Bouwmeester T, Knöchel W, Pieler T
Max-Planck-Institut fuer Molekulare Genetik, Otto-Warburg-Laboratorium, Berlin, Germany.
J Mol Biol. 1993 Mar 20;230(2):400-12. doi: 10.1006/jmbi.1993.1158.
Finger associated box-zinc finger proteins (FAX-ZFPs) constitute a subfamily of the many C2H2 type ZFPs in Xenopus laevis. FAX is a highly conserved protein domain connected to variable zinc finger clusters. Three different FAX-ZFPs encoding genomic fragments were isolated and subjected to a detailed structural characterization. All three exhibit a common, highly conserved exon/intron organization, with the variant zinc finger clusters organized in a single exon for each gene analysed. Two of the three genomic fragments contain a second FAX-ZFP encoding (partial) transcription unit each. Further evidence for a clustered organization of FAX-ZFP transcription units is provided by Southern blot analysis of large genomic restriction fragments separated by transverse field gel electrophoresis, and by in situ hybridization on intact chromosomes. Comparative sequence analysis of the genes isolated reveals an exceptional degree of DNA sequence conservation in both exon and intron regions in one part of the FAX encoding region, suggesting that recent gene conversion has led to the combination of these sequence elements with DNA segments including regions encoding variant zinc finger clusters. Overexpression of the FAX domain by itself or of a full-length FAX-ZFP in X. laevis embryos by means of mRNA injection does not interfere with the normal developmental program, suggesting general and not cell specific/regulatory functions for X. laevis FAX-ZFPs.
手指相关盒-锌指蛋白(FAX-ZFPs)构成了非洲爪蟾众多C2H2型锌指蛋白中的一个亚家族。FAX是一个与可变锌指簇相连的高度保守的蛋白结构域。分离出三个不同的编码FAX-ZFPs的基因组片段,并对其进行详细的结构表征。所有三个片段都呈现出一种共同的、高度保守的外显子/内含子组织形式,在所分析的每个基因中,可变锌指簇都组织在一个单一的外显子中。三个基因组片段中的两个各自包含一个第二个编码(部分)FAX-ZFP的转录单元。通过横向场凝胶电泳分离的大基因组限制性片段的Southern印迹分析以及完整染色体上的原位杂交,为FAX-ZFP转录单元的成簇组织提供了进一步的证据。对分离出的基因进行比较序列分析发现,在FAX编码区域的一部分中,外显子和内含子区域都存在异常程度的DNA序列保守性,这表明最近的基因转换导致了这些序列元件与包括编码可变锌指簇区域在内的DNA片段的组合。通过mRNA注射在非洲爪蟾胚胎中单独过表达FAX结构域或全长FAX-ZFP,并不干扰正常的发育程序,这表明非洲爪蟾FAX-ZFPs具有普遍而非细胞特异性/调节性的功能。