He Qin, Shi Jingxue, Sun Hong, An Jie, Huang Ying, Sheikh M Saeed
Department of Pharmacology, State University of New York, Upstate Medical University, Syracuse, New York.
Mol Cell Pharmacol. 2010;2(2):61-68.
Homeodomain-interacting protein kinases including HIPK1, HIPK2 and HIPK3 are serine/threonine kinases that form a family of highly conserved kinases. HIPKs are involved in diverse cellular functions including regulation cell death, survival, proliferation and differentiation. Here we report the characterization of a human HIPK4 that we identified in a proteomic screen during our efforts to unravel novel markers linked to cell death and survival. Human HIPK4 protein is composed of 616 residues with predicted molecular mass of 69.425 kDa and harbors a serine/threonine protein kinase catalytic domain at its N-terminal end. In the in vitro kinase assay, HIPK4 exhibits kinase activity and mutation of the conserved lysine 40 or aspartic acid 136 residue in its catalytic domain inactivates its kinase function. Human HIPK4 harbors multiple putative serine/threonine- and tyrosine-specific phsophorylation sites and also contains four high probability sumoylation sites, findings that suggest its function to be modulated by post-translational modifications. HIPK4 has been so named in the database because of its sequence homology to HIPK1, 2 and 3 predominantly within its catalytic domain. However, HIPK4 is smaller in size than the known HIPKs and has additional distinct features suggesting it to be a unique member of the HIPK family. Further functional characterization of HIPK4 is needed and will prove valuable to ascertain whether it performs distinct functions or share overlapping functions with other HIPKs.
包括HIPK1、HIPK2和HIPK3在内的同源域相互作用蛋白激酶是丝氨酸/苏氨酸激酶,它们构成了一个高度保守的激酶家族。HIPK参与多种细胞功能,包括调节细胞死亡、存活、增殖和分化。在此,我们报告了人类HIPK4的特征,我们是在蛋白质组学筛选中鉴定到它的,当时我们正在努力寻找与细胞死亡和存活相关的新标记物。人类HIPK4蛋白由616个氨基酸残基组成,预测分子量为69.425 kDa,在其N末端含有一个丝氨酸/苏氨酸蛋白激酶催化结构域。在体外激酶分析中,HIPK4表现出激酶活性,其催化结构域中保守的赖氨酸40或天冬氨酸136残基发生突变会使其激酶功能失活。人类HIPK4含有多个假定的丝氨酸/苏氨酸和酪氨酸特异性磷酸化位点,还包含四个高可能性的SUMO化位点,这些发现表明其功能可能受到翻译后修饰的调节。HIPK4在数据库中之所以这样命名,是因为它与HIPK1、2和3在其催化结构域内具有主要的序列同源性。然而,HIPK4的尺寸比已知的HIPK小,并且具有其他独特特征,表明它是HIPK家族的一个独特成员。需要对HIPK4进行进一步的功能表征,这对于确定它是否执行独特功能或与其他HIPK共享重叠功能将是有价值的。