Brede G, Solheim J, Tröen G, Prydz H
Biotechnology Center of Oslo, University of Oslo, Gaustadalleen 21, Oslo, 0349, Norway.
Genomics. 2000 Nov 15;70(1):82-92. doi: 10.1006/geno.2000.6365.
We report here the characterization of PSKH1, a novel human protein serine kinase with multiple intracellular localizations. The gene consists of three exons distributed over 35 kb of genomic DNA in region 16q22.1. The 3.4-kb cDNA predicts a protein of 424 amino acids with a calculated molecular mass of 48.1 kDa and pI of 9.6. PSKH1 is expressed in all tissues and cell lines tested as shown by Northern blots, with the highest level of abundance in testis. PSKH1 displays the highest level of similarity with rat CaM kinase I (50. 2%) over 259 amino acids in the conserved catalytic region, but lacks significant homology with proteins in the database outside the catalytic core. Polyclonal antibodies have been raised, and indirect immunofluorescence microscopy of untransfected COS-1 cells suggests that PSKH1 is localized in the Brefeldin A-sensitive Golgi compartment, at centrosomes, in the nucleus with a somewhat speckle-like presence, and more diffusely in the cytoplasm. The presence in the centrosome appears to be enhanced during osmotic stress. Immunoisolated PSKH1 does not phosphorylate any of the common kinase substrates in vitro, but autophosphorylates exclusively serines within its COOH-terminal region in an intermolecular fashion. Furthermore, autophosphorylation activity is repressed upon addition of Ca(2+)/CaM, suggesting that PSKH1 activity depends on Ca(2+) concentration in vivo.
我们在此报告PSKH1的特性,它是一种具有多种细胞内定位的新型人类蛋白丝氨酸激酶。该基因由3个外显子组成,分布在16q22.1区域35 kb的基因组DNA上。3.4 kb的cDNA预测编码一个424个氨基酸的蛋白质,计算分子量为48.1 kDa,pI为9.6。Northern印迹显示,PSKH1在所检测的所有组织和细胞系中均有表达,在睾丸中的表达丰度最高。在保守催化区域的259个氨基酸上,PSKH1与大鼠钙调蛋白激酶I的相似性最高(50.2%),但在催化核心之外与数据库中的蛋白质缺乏显著同源性。已制备多克隆抗体,未转染的COS-1细胞的间接免疫荧光显微镜检查表明,PSKH1定位于布雷菲德菌素A敏感的高尔基体区室、中心体、细胞核(呈有点像斑点的存在)以及更弥散地分布在细胞质中。在渗透应激期间,中心体中的PSKH1含量似乎会增加。免疫分离的PSKH1在体外不会磷酸化任何常见的激酶底物,但会以分子间方式在其COOH末端区域特异性地自磷酸化丝氨酸。此外,添加Ca(2+)/钙调蛋白后自磷酸化活性受到抑制,这表明PSKH1的活性在体内取决于Ca(2+)浓度。