首页> 外文期刊>Proteins: Structure, Function, and Genetics >hCINAP is an atypical mammalian nuclear adenylate kinase with an ATPase motif: structural and functional studies.
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hCINAP is an atypical mammalian nuclear adenylate kinase with an ATPase motif: structural and functional studies.

机译:hCINAP是一种具有ATPase基序的非典型哺乳动物核腺苷酸激酶:结构和功能研究。

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Human coilin interacting nuclear ATPase protein (hCINAP) directly interacts with coilin, a marker protein of Cajal Bodies (CBs), nuclear organelles involved in the maturation of small nuclear ribonucleoproteins UsnRNPs and snoRNPs. hCINAP has previously been designated as an adenylate kinase (AK6), but is very atypical as it exhibits unusually broad substrate specificity, structural features characteristic of ATPase/GTPase proteins (Walker motifs A and B) and also intrinsic ATPase activity. Despite its intriguing structure, unique properties and cellular localization, the enzymatic mechanism and biological function of hCINAP have remained poorly characterized. Here, we offer the first high-resolution structure of hCINAP in complex with the substrate ADP (and dADP), the structure of hCINAP with a sulfate ion bound at the AMP binding site, and the structure of the ternary complex hCINAP-Mg(2+) ADP-Pi. Induced fit docking calculations are used to predict the structure of the hCINAP-Mg(2+) ATP-AMP ternary complex. Structural analysis suggested a functional role for His79 in the Walker B motif. Kinetic analysis of mutant hCINAP-H79G indicates that His79 affects both AK and ATPase catalytic efficiency and induces homodimer formation. Finally, we show that in vivo expression of hCINAP-H79G in human cells is toxic and drastically deregulates the number and appearance of CBs in the cell nucleus. Our findings suggest that hCINAP may not simply regulate nucleotide homeostasis, but may have broader functionality, including control of CB assembly and disassembly in the nucleus of human cells.
机译:人类线圈蛋白相互作用的核ATPase蛋白(hCINAP)直接与线圈蛋白(Cajal Bodies(CBs)的标记蛋白),参与小核核糖核蛋白UsnRNPs和snoRNPs成熟的核细胞器相互作用。 hCINAP先前已被指定为腺苷酸激酶(AK6),但由于它具有异常宽泛的底物特异性,ATPase / GTPase蛋白的特征结构特征(Walker基序A和B)以及固有的ATPase活性,因此非常不典型。尽管hCINAP具有令人着迷的结构,独特的特性和细胞定位,但其酶促机制和生物学功能仍未充分表征。在这里,我们提供了与底物ADP(和dADP)复合的hCINAP的第一个高分辨率结构,在AMP结合位点结合有硫酸根离子的hCINAP的结构以及三元复合物hCINAP-Mg(2 +)ADP-Pi。诱导拟合对接计算用于预测hCINAP-Mg(2+)ATP-AMP三元复合物的结构。结构分析表明,His79在Walker B基序中具有功能性作用。突变体hCINAP-H79G的动力学分析表明,His79影响AK和ATPase的催化效率,并诱导同源二聚体的形成。最后,我们显示了hCINAP-H79G在人细胞中的体内表达是有毒的,并且极大地调节了细胞核中CB的数量和外观。我们的发现表明,hCINAP可能不仅调节核苷酸的体内稳态,而且可能具有更广泛的功能,包括控制人细胞核中的CB组装和拆卸。

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