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本文引用的文献

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Segregation of negatively charged phospholipids by the polycationic and farnesylated membrane anchor of Kras.Kras 的多正电荷和法呢基化膜锚定导致带负电荷的磷脂分离。
Biophys J. 2010 Dec 1;99(11):3666-74. doi: 10.1016/j.bpj.2010.10.031.
2
Rac controls PIP5K localisation and PtdIns(4,5)P₂ synthesis, which modulates vinculin localisation and neurite dynamics.Rac 控制 PIP5K 的定位和 PtdIns(4,5)P₂ 的合成,从而调节 vinculin 的定位和神经突动力学。
J Cell Sci. 2010 Oct 15;123(Pt 20):3535-46. doi: 10.1242/jcs.062679. Epub 2010 Sep 14.
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Allosteric gating of Son of sevenless activity by the histone domain.组蛋白结构域对 Sevenless 活性的别构门控作用。
Proc Natl Acad Sci U S A. 2010 Feb 23;107(8):3436-40. doi: 10.1073/pnas.0914315107. Epub 2010 Feb 4.
4
An electrostatic switch displaces phosphatidylinositol phosphate kinases from the membrane during phagocytosis.在吞噬作用过程中,静电开关会使磷脂酰肌醇磷酸激酶从膜上移位。
J Cell Biol. 2009 Nov 30;187(5):701-14. doi: 10.1083/jcb.200909025.
5
A reciprocal interdependence between Nck and PI(4,5)P(2) promotes localized N-WASp-mediated actin polymerization in living cells.Nck 和 PI(4,5)P(2) 之间的相互依存关系促进了活细胞中局部 N-WASp 介导的肌动蛋白聚合。
Mol Cell. 2009 Nov 13;36(3):525-35. doi: 10.1016/j.molcel.2009.10.025.
6
PIP5K-driven PtdIns(4,5)P2 synthesis: regulation and cellular functions.PIP5K 驱动的 PtdIns(4,5)P2 合成:调控和细胞功能。
J Cell Sci. 2009 Nov 1;122(Pt 21):3837-50. doi: 10.1242/jcs.056127.
7
Two novel phosphatidylinositol-4-phosphate 5-kinase type Igamma splice variants expressed in human cells display distinctive cellular targeting.在人类细胞中表达的两种新型Iγ型磷脂酰肌醇-4-磷酸5-激酶剪接变体表现出独特的细胞靶向性。
Biochem J. 2009 Aug 27;422(3):473-82. doi: 10.1042/BJ20090638.
8
Phosphatidic acid signaling regulation of Ras superfamily of small guanosine triphosphatases.小GTP酶Ras超家族的磷脂酸信号调节
Biochim Biophys Acta. 2009 Sep;1791(9):850-5. doi: 10.1016/j.bbalip.2009.05.013. Epub 2009 Jun 21.
9
Sequential regulation of DOCK2 dynamics by two phospholipids during neutrophil chemotaxis.中性粒细胞趋化过程中两种磷脂对DOCK2动力学的顺序调节。
Science. 2009 Apr 17;324(5925):384-7. doi: 10.1126/science.1170179. Epub 2009 Mar 26.
10
Protein structure prediction on the Web: a case study using the Phyre server.网络上的蛋白质结构预测:使用Phyre服务器的案例研究
Nat Protoc. 2009;4(3):363-71. doi: 10.1038/nprot.2009.2.

磷脂酸对 PIPKI 的调节对于肌动蛋白细胞骨架的重排至关重要。

Phosphatidic acid regulation of PIPKI is critical for actin cytoskeletal reorganization.

机构信息

Department of Pharmacology and Center for Developmental Genetics, Stony Brook University, Stony Brook, NY 11794, USA.

出版信息

J Lipid Res. 2012 Dec;53(12):2598-609. doi: 10.1194/jlr.M028597. Epub 2012 Sep 18.

DOI:10.1194/jlr.M028597
PMID:22991193
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3494241/
Abstract

Type I phosphatidylinositol-4-phosphate 5-kinase (PIPKI) is the main enzyme generating the lipid second messenger phosphatidylinositol-4,5-bisphosphate [PI(4,5)P2], which has critical functions in many cellular processes, such as cytoskeletal reorganization, membrane trafficking, and signal transduction. All three members of the PIPKI family are activated by phosphatidic acid (PA). However, how PA regulates the activity and functions of PIPKI have not been fully elucidated. In this study, we identify a PA-binding site on PIPKIγ. Mutation of this site inhibited the PA-stimulated activity and membrane localization of PIPKIγ as well as the formation of actin comets and foci induced by PIPKIγ. We also demonstrate that phospholipase D (PLD) generates a pool of PA involved in PIPKIγ regulation by showing that PLD inhibitors blocked the membrane localization of PIPKIγ and its ability to induce actin cytoskeletal reorganization. Targeting the PIPKIγ PA-binding-deficient mutant to membranes by a membrane localization sequence failed to restore the actin reorganization activity of PIPKIγ, suggesting that PA binding is not only involved in recruiting PIPKIγ to membranes but also may induce a conformational change. Taken together, these results reveal a new molecular mechanism through which PA regulates PIPKI and provides direct evidence that PA is important for the localization and functions of PIPKI in intact cells.

摘要

I 型磷酸肌醇-4-磷酸 5-激酶(PIPKI)是生成脂质第二信使磷脂酰肌醇-4,5-二磷酸[PI(4,5)P2]的主要酶,它在许多细胞过程中具有关键功能,如细胞骨架重组、膜运输和信号转导。PIPKI 家族的所有三个成员都被磷酸脂酸(PA)激活。然而,PA 如何调节 PIPKI 的活性和功能尚未完全阐明。在这项研究中,我们确定了 PIPKIγ 上的一个 PA 结合位点。该位点的突变抑制了 PA 刺激的 PIPKIγ 活性和膜定位,以及由 PIPKIγ 诱导的肌动蛋白彗星和焦点的形成。我们还证明,磷脂酶 D(PLD)通过生成涉及 PIPKIγ 调节的 PA 池来发挥作用,因为 PLD 抑制剂阻断了 PIPKIγ 的膜定位及其诱导肌动蛋白细胞骨架重组的能力。通过膜定位序列将 PIPKIγ 的 PA 结合缺陷突变体靶向膜,未能恢复 PIPKIγ 的肌动蛋白重组活性,这表明 PA 结合不仅参与了 PIPKIγ 向膜的募集,而且可能诱导构象变化。总之,这些结果揭示了 PA 调节 PIPKI 的新分子机制,并提供了直接证据,证明 PA 对 PIPKI 在完整细胞中的定位和功能很重要。