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人类强直性肌营养不良激酶相关Cdc42结合激酶α的基因组组织揭示了多种可变剪接和功能多样性。

Genomic organization of human myotonic dystrophy kinase-related Cdc42-binding kinase alpha reveals multiple alternative splicing and functional diversity.

作者信息

Tan Ivan, Cheong Albert, Lim Louis, Leung Thomas

机构信息

Glaxo-IMCB Group, Institute of Molecular and Cell Biology, 30 Medical Drive, Singapore 117609, Singapore.

出版信息

Gene. 2003 Jan 30;304:107-15. doi: 10.1016/s0378-1119(02)01185-x.

DOI:10.1016/s0378-1119(02)01185-x
PMID:12568720
Abstract

Myotonic dystrophy kinase-related Cdc42-binding kinase alpha (MRCKalpha) is a Cdc42/Rac interactive binding-containing serine/threonine kinase with multiple functional domains. Its roles in the regulation of peripheral actin reorganization in HeLa cells and NGF-induced neurite outgrowth in PC12 cells have been documented. Here we report the characterization of the genomic structure and alternative splicing of the human counterpart. Human MRCKalpha gene is located on chromosome 1q42.1, spanning a genomic region of 250-300 kb and is composed of 41 exons. Four exons in the internal variable region and six in the 3' end were found to undergo extensive alternative splicing, giving rise to 96 possible transcripts of different combinations. The region of the internal splice site that defines a variable region in between two functional domains of opposite regulatory effects on MRCKalpha catalytic activity, and the 3' end splice site that generates variants with differential GTPase binding activity suggest a role for these alternative splicing events in MRCKalpha regulation.

摘要

强直性肌营养不良激酶相关的Cdc42结合激酶α(MRCKα)是一种含有Cdc42/Rac相互作用结合结构域的丝氨酸/苏氨酸激酶,具有多个功能结构域。其在HeLa细胞外周肌动蛋白重组调控以及PC12细胞中神经生长因子诱导的神经突生长中的作用已有文献记载。在此,我们报告人类对应物的基因组结构和可变剪接的特征。人类MRCKα基因位于1号染色体的1q42.1,跨越250 - 300 kb的基因组区域,由41个外显子组成。发现内部可变区的4个外显子和3'端的6个外显子会发生广泛的可变剪接,产生96种不同组合的可能转录本。内部剪接位点区域定义了对MRCKα催化活性具有相反调节作用的两个功能结构域之间的可变区,而产生具有不同GTP酶结合活性变体的3'端剪接位点表明这些可变剪接事件在MRCKα调节中发挥作用。

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Genomic organization of human myotonic dystrophy kinase-related Cdc42-binding kinase alpha reveals multiple alternative splicing and functional diversity.人类强直性肌营养不良激酶相关Cdc42结合激酶α的基因组组织揭示了多种可变剪接和功能多样性。
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