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The crystal structure of mammalian inositol 13456-pentakisphosphate 2-kinase reveals a new zinc-binding site and key features for protein function

机译:哺乳动物肌醇13456-五磷酸2激酶的晶体结构揭示了一个新的锌结合位点和蛋白质功能的关键特征

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摘要

Inositol 1,3,4,5,6-pentakisphosphate 2-kinases (IP5 2-Ks) are part of a family of enzymes in charge of synthesizing inositol hexakisphosphate (IP6) in eukaryotic cells. This protein and its product IP6 present many roles in cells, participating in mRNA export, embryonic development, and apoptosis. We reported previously that the full-length IP5 2-K from Arabidopsis thaliana is a zinc metallo-enzyme, including two separated lobes (the N- and C-lobes). We have also shown conformational changes in IP5 2-K and have identified the residues involved in substrate recognition and catalysis. However, the specific features of mammalian IP5 2-Ks remain unknown. To this end, we report here the first structure for a murine IP5 2-K in complex with ATP/IP5 or IP6. Our structural findings indicated that the general folding in N- and C-lobes is conserved with A. thaliana IP5 2-K. A helical scaffold in the C-lobe constitutes the inositol phosphate-binding site, which, along with the participation of the N-lobe, endows high specificity to this protein. However, we also noted large structural differences between the orthologues from these two eukaryotic kingdoms. These differences include a novel zinc-binding site and regions unique to the mammalian IP5 2-K, as an unexpected basic patch on the protein surface. In conclusion, our findings have uncovered distinct features of a mammalian IP5 2-K and set the stage for investigations into protein-protein or protein-RNA interactions important for IP5 2-K function and activity.
机译:肌醇1,3,4,5,6-五磷酸二钾(IP5 2-Ks)是负责在真核细胞中合成肌醇六磷酸(IP6)的酶家族的一部分。这种蛋白质及其产物IP6在细胞中扮演着许多角色,参与mRNA的输出,胚胎发育和细胞凋亡。我们以前曾报道过,拟南芥的全长IP5 2-K是一种锌金属酶,包括两个分离的叶(N和C叶)。我们还显示了IP5 2-K的构象变化,并鉴定了参与底物识别和催化的残基。但是,哺乳动物IP5 2-Ks的具体特征仍然未知。为此,我们在这里报告了与ATP / IP5或IP6复合的鼠类IP5 2-K的第一个结构。我们的结构发现表明,拟南芥IP5 2-K保守了N和C叶的折叠。 C瓣中的螺旋支架构成了肌醇磷酸结合位点,与N瓣的参与一起赋予了该蛋白高特异性。但是,我们还注意到这两个真核生物王国的直向同源物之间存在较大的结构差异。这些差异包括一个新的锌结合位点和哺乳动物IP5 2-K所特有的区域,这是蛋白质表面上出乎意料的基本补丁。总之,我们的发现揭示了哺乳动物IP5 2-K的独特特征,为研究对IP5 2-K功能和活性重要的蛋白质-蛋白质或蛋白质-RNA相互作用奠定了基础。

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