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人类Raf-1激酶中磷脂酸结合结构域的功能分析:磷脂酸结合结构域中的突变导致斑马鱼胚胎发育过程中的尾部和躯干异常。

Functional analysis of a phosphatidic acid binding domain in human Raf-1 kinase: mutations in the phosphatidate binding domain lead to tail and trunk abnormalities in developing zebrafish embryos.

作者信息

Ghosh Sujoy, Moore Sean, Bell Robert M, Dush Michael

机构信息

GlaxoSmithKline, Genetics Research, Research Triangle Park, North Carolina 27709, USA.

出版信息

J Biol Chem. 2003 Nov 14;278(46):45690-6. doi: 10.1074/jbc.M302933200. Epub 2003 Aug 18.

Abstract

Previously, we and others identified a 35-amino acid segment within human Raf-1 kinase that preferentially binds phosphatidic acid. The presence of phosphatidic acid was found to be necessary for the translocation of Raf-1 to the plasma membrane. We have now employed a combination of alanine-scanning and deletion mutagenesis to identify the critical amino acid residues in Raf-1 necessary for interaction with phosphatidic acid. Progressive mutations within a tetrapeptide motif (residues 398-401 of human Raf-1) reduced and finally eliminated binding of Raf-1 to phosphatidic acid. We then injected zebrafish embryos with RNA encoding wild-type Raf-1 kinase or a mutant version with triple alanine mutations in the tetrapeptide motif and followed the morphological fate of embryonic development. Embryos with mutant but not wild-type Raf-1 exhibited defects in posterior axis formation exemplified by bent trunk and tail structures. Molecular evidence for lack of signaling through mutated Raf-1 was obtained by aberrant in situ hybridization of the ntl (no tail) gene, which functions downstream of Raf-1. Our results demonstrate that a functional phosphatidate binding site is necessary for Raf-1 function in embryonic development.

摘要

此前,我们和其他研究人员在人类Raf-1激酶中鉴定出一个35个氨基酸的片段,该片段优先结合磷脂酸。研究发现,磷脂酸的存在对于Raf-1转位至质膜是必需的。我们现在采用丙氨酸扫描和缺失诱变相结合的方法,来鉴定Raf-1中与磷脂酸相互作用所必需的关键氨基酸残基。在一个四肽基序(人类Raf-1的第398 - 401位残基)内的逐步突变降低并最终消除了Raf-1与磷脂酸的结合。然后,我们将编码野生型Raf-1激酶或在四肽基序中有三个丙氨酸突变的突变体版本的RNA注射到斑马鱼胚胎中,并追踪胚胎发育的形态学命运。具有突变型而非野生型Raf-1的胚胎在后轴形成方面表现出缺陷,其特征为躯干和尾部结构弯曲。通过ntl(无尾)基因的异常原位杂交获得了缺乏通过突变型Raf-1进行信号传导的分子证据,ntl基因在Raf-1的下游发挥作用。我们的结果表明,功能性磷脂酸结合位点对于Raf-1在胚胎发育中的功能是必需的。

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