Zorn A M, Krieg P A
Center for Developmental Biology, Department of Zoology, University of Texas at Austin, 78712, USA.
Genes Dev. 1997 Sep 1;11(17):2176-90. doi: 10.1101/gad.11.17.2176.
Mutations in the mouse indicate that quaking gene function is essential for both embryogenesis and for development of the nervous system. Recent isolation of the mouse quaking gene identified a putative RNA-binding protein containing a single KH domain. We have previously isolated the Xenopus homolog of quaking, Xqua, and shown that the sequence is highly conserved through evolution. Here, we report experimental data on the biochemical function of the quaking protein and its role during development. We demonstrate that the quaking protein expressed during early embryogenesis, pXqua357, can bind RNA in vitro, and we have mapped the regions of the protein that are essential for RNA binding. We present evidence that pXqua can form homodimers and that dimerization may be required for RNA binding. Oocyte injection experiments show that pXqua357 is located in both the nucleus and cytoplasm. In the Xenopus embryo, Xqua is first expressed during gastrulation in the organizer region and its derivative, the notochord. In later stage embryos, Xqua is expressed in a number of mesodermal and neural tissues. We demonstrate that disruption of normal Xqua function, by overexpression of a dominant inhibitory form of the protein, blocks notochord differentiation. Xqua function appears to be required for the accumulation of important mRNAs such as Xnot, Xbra, and gsc. These results indicate an essential role for the quaking RNA-binding protein during early vertebrate embryogenesis.
小鼠中的突变表明,震颤基因功能对于胚胎发育和神经系统发育均至关重要。最近对小鼠震颤基因的分离鉴定出一种含有单个KH结构域的推定RNA结合蛋白。我们之前已经分离出了震颤基因的非洲爪蟾同源物Xqua,并表明该序列在进化过程中高度保守。在此,我们报告关于震颤蛋白生化功能及其在发育过程中作用的实验数据。我们证明,在早期胚胎发育过程中表达的震颤蛋白pXqua357在体外能够结合RNA,并且我们已经确定了该蛋白中对于RNA结合至关重要的区域。我们提供证据表明pXqua可以形成同二聚体,并且二聚化可能是RNA结合所必需的。卵母细胞注射实验表明pXqua357定位于细胞核和细胞质中。在非洲爪蟾胚胎中,Xqua在原肠胚形成期首先在组织者区域及其衍生物脊索中表达。在后期胚胎中,Xqua在许多中胚层和神经组织中表达。我们证明,通过过表达该蛋白的显性抑制形式来破坏正常的Xqua功能会阻断脊索分化。Xqua功能似乎是诸如Xnot、Xbra和gsc等重要mRNA积累所必需的。这些结果表明震颤RNA结合蛋白在早期脊椎动物胚胎发育过程中起着至关重要的作用。