Grant K M, Hassan P, Anderson J S, Mottram J C
Wellcome Unit of Molecular Parasitology, University of Glasgow, The Anderson College, Glasgow G11 6NU, Scotland, United Kingdom.
J Biol Chem. 1998 Apr 24;273(17):10153-9. doi: 10.1074/jbc.273.17.10153.
A cdc2-related protein kinase gene, crk3, has been isolated from the parasitic protozoan Leishmania mexicana. Data presented here suggests that crk3 is a good candidate to be the leishmanial cdc2 homologue but that the parasite protein has some characteristics which distinguish it from mammalian cdc2. crk3 is predicted to encode a 35.6-kDa protein with 54% sequence identity with the human cyclin-dependent kinase cdc2 and 78% identity with the Trypanosoma brucei CRK3. The trypanosomatid CRK3 proteins have an unusual, poorly conserved 19-amino acid N-terminal extension not present in human cdc2. crk3 is single copy, and there is 5-fold higher mRNA in the replicative promastigote life-cycle stage than in the non-dividing metacyclic form or mammalian amastigote form. A leishmanial suc-binding cdc2-related kinase (SBCRK) histone H1 kinase, has previously been described which binds the yeast protein, p13(suc1), and that has stage-regulated activity (Mottram J. C., Kinnaird, J., Shiels, B. R., Tait, A., and Barry, J. D. (1993) J. Biol. Chem. 268, 21044-21051). CRK3 from cell extracts of the three life-cycle stages was found to bind p13(suc1) and the leishmanial homologue p12(cks1). CRK3 fused with six histidines at the C terminus was expressed in L. mexicana and shown to have SBCRK histone H1 kinase activity. Depletion of histidine-tagged CRK3 from L. mexicana cell extracts, by Ni-nitrilotriacetic acid agarose selection, reduced histone H1 kinase activity binding to p13(suc1). These data imply that crk3 encodes the kinase subunit of SBCRK. SBCRK and histidine-tagged CRK3 activities were inhibited by the purine analogue olomoucine with an IC50 of 28 and 42 microM, respectively, 5-6-fold higher than human p34(cdc2)/cyclinB.
已从寄生原生动物墨西哥利什曼原虫中分离出一个与cdc2相关的蛋白激酶基因crk3。本文提供的数据表明,crk3很可能是利什曼原虫cdc2的同源物,但该寄生虫蛋白具有一些与哺乳动物cdc2不同的特征。预测crk3编码一种35.6 kDa的蛋白,与人类细胞周期蛋白依赖性激酶cdc2的序列同一性为54%,与布氏锥虫CRK3的同一性为78%。锥虫CRK3蛋白有一个不寻常的、保守性较差的19个氨基酸的N端延伸,人类cdc2中不存在。crk3是单拷贝的,在增殖性前鞭毛体生命周期阶段的mRNA比非分裂的后循环形式或哺乳动物无鞭毛体形式高5倍。先前已描述了一种利什曼原虫suc结合的cdc2相关激酶(SBCRK)组蛋白H1激酶,它能结合酵母蛋白p13(suc1),且具有阶段调节活性(Mottram J. C., Kinnaird, J., Shiels, B. R., Tait, A., and Barry, J. D. (1993) J. Biol. Chem. 268, 21044 - 21051)。发现来自三个生命周期阶段细胞提取物的CRK3能结合p13(suc1)和利什曼原虫同源物p12(cks1)。在C端与六个组氨酸融合的CRK3在墨西哥利什曼原虫中表达,并显示具有SBCRK组蛋白H1激酶活性。通过镍 - 次氮基三乙酸琼脂糖选择从墨西哥利什曼原虫细胞提取物中去除组氨酸标签的CRK3,降低了与p13(suc1)结合的组蛋白H1激酶活性。这些数据表明crk3编码SBCRK的激酶亚基。嘌呤类似物olomoucine分别以28和42 microM的IC50抑制SBCRK和组蛋白标签的CRK3活性,比人类p34(cdc2)/细胞周期蛋白B高5 - 6倍。