首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Inositol hexakisphosphate kinase-2 acts as an effector of the vertebrate Hedgehog pathway
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Inositol hexakisphosphate kinase-2 acts as an effector of the vertebrate Hedgehog pathway

机译:肌醇六磷酸激酶-2作为脊椎动物刺猬通路的效应子。

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Inositol phosphate (IP) kinases constitute an emerging class of cellular kinases linked to multiple cellular activities. Here, we report a previously uncharacterized cellular function in Hedgehog (Hh) signaling for the IP kinase designated inositol hexakisphosphate kinase-2 (IP6K2) that produces diphosphoryl inositol phosphates (PP-IPs). In zebrafish embryos, IP6K2 activity was required for normal development of craniofacial structures, somites, and neural crest cells. ip6k2 depletion in both zebrafish and mammalian cells also inhibited Hh target gene expression. Inhibiting IP_6 kinase activity using N(2)-(m-(trifluoromethy)lbenzyl) N(6)-(p-nitrobenzyl) purine (TNP) resulted in altered Hh signal transduction. In zebrafish, restoring IP6K2 levels with exogenous ip6k2 mRNA reversed the effects of IP6K2 depletion. Furthermore, overexpression of ip6k2 in mammalian cells enhanced the Hh pathway response, suggesting IP6K2 is a positive regulator of Hh signaling. Perturbations from IP6K2 depletion or TNP were reversed by overexpressing smoM2, gli1, or ip6k2. Moreover, the inhibitory effect of cyclopamine was reversed by overexpressing ip6k2. This identified roles for the inositol kinase pathway in early vertebrate development and tissue morphogenesis, and in Hh signaling. We propose that IP6K2 activity is required at the level or downstream of Smooth-ened but upstream of the transcription activator Gli1.
机译:磷酸肌醇(IP)激酶构成了与多种细胞活动相关的新兴一类细胞激酶。在这里,我们报告刺猬(Hh)信号的先前未表征的细胞功能,称为IP激酶,称为肌醇六磷酸激酶2(IP6K2),产生二磷酸肌醇磷酸酯(PP-IPs)。在斑马鱼胚胎中,颅面结构,体节和神经c细胞的正常发育需要IP6K2活性。斑马鱼和哺乳动物细胞中的ip6k2耗竭也抑制了Hh目标基因的表达。使用N(2)-(间-(三氟甲基)1-苄基)N(6)-(对硝基苄基)嘌呤(TNP)抑制IP_6激酶活性导致Hh信号转导改变。在斑马鱼中,使用外源ip6k2 mRNA恢复IP6K2水平可以逆转IP6K2耗竭的影响。此外,哺乳动物细胞中ip6k2的过表达增强了Hh通路的应答,表明IP6K2是Hh信号的正调节剂。通过过度表达smoM2,gli1或ip6k2,可以消除IP6K2耗尽或TNP引起的干扰。而且,过表达ip6k2逆转了环巴胺的抑制作用。这确定了肌醇激酶途径在早期脊椎动物发育和组织形态发生以及Hh信号传导中的作用。我们建议IP6K2活性是需要在平滑激活的水平或下游,但在转录激活因子Gli1的上游。

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