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两个新型Src 同源 2 结构域蛋白相互作用,调节有丝分裂期间和早期发育中的基因表达。

Two novel Src homology 2 domain proteins interact to regulate dictyostelium gene expression during growth and early development.

机构信息

School of Life Sciences, University of Dundee, Dow Street, Dundee DD1 5EH, Scotland, United Kingdom.

出版信息

J Biol Chem. 2010 Jul 23;285(30):22927-35. doi: 10.1074/jbc.M110.139733. Epub 2010 May 10.

Abstract

There are 13 Dictyostelium Src homology 2 (SH2) domain proteins, almost 10-fold fewer than in mammals, and only three are functionally unassigned. One of these, LrrB, contains a novel combination of protein interaction domains: an SH2 domain and a leucine-rich repeat domain. Growth and early development appear normal in the mutant, but expression profiling reveals that three genes active at these stages are greatly underexpressed: the ttdA metallohydrolase, the abcG10 small molecule transporter, and the cinB esterase. In contrast, the multigene family encoding the lectin discoidin 1 is overexpressed in the disruptant strain. LrrB binds to 14-3-3 protein, and the level of binding is highest during growth and decreases during early development. Comparative tandem affinity purification tagging shows that LrrB also interacts, via its SH2 domain and in a tyrosine phosphorylation-dependent manner, with two novel proteins: CldA and CldB. Both of these proteins contain a Clu domain, a >200-amino acid sequence present within highly conserved eukaryotic proteins required for correct mitochondrial dispersal. A functional interaction of LrrB with CldA is supported by the fact that a cldA disruptant mutant also underexpresses ttdA, abcG10, and cinB. Significantly, CldA is itself one of the three functionally unassigned SH2 domain proteins. Thus, just as in metazoa, but on a vastly reduced numerical scale, an interacting network of SH2 domain proteins regulates specific Dictyostelium gene expression.

摘要

有 13 种粘菌Src 同源 2(SH2)结构域蛋白,几乎比哺乳动物少 10 倍,只有 3 种功能尚未确定。其中一种,LrrB,包含一个新颖的蛋白质相互作用结构域组合:一个 SH2 结构域和一个富含亮氨酸重复结构域。突变体的生长和早期发育似乎正常,但表达谱分析表明,三个在这些阶段活跃的基因表达大大下调:ttdA 金属水解酶、abcG10 小分子转运体和 cinB 酯酶。相比之下,编码凝集素 discoidin 1 的多基因家族在破坏体菌株中过表达。LrrB 与 14-3-3 蛋白结合,结合水平在生长过程中最高,在早期发育过程中降低。比较串联亲和纯化标记表明,LrrB 还通过其 SH2 结构域以酪氨酸磷酸化依赖的方式与两种新蛋白相互作用:CldA 和 CldB。这两种蛋白质都含有 Clu 结构域,这是一个 >200 个氨基酸序列,存在于高度保守的真核蛋白质中,对于正确的线粒体分散是必需的。LrrB 与 CldA 的功能相互作用得到了支持,因为 cldA 破坏突变体也下调了 ttdA、abcG10 和 cinB。重要的是,CldA 本身就是 3 种功能未确定的 SH2 结构域蛋白之一。因此,就像在后生动物中一样,但在数量上大大减少,一个相互作用的 SH2 结构域蛋白网络调节特定的粘菌基因表达。

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