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高度相似的核苷二磷酸激酶的结构比较:不同膜结合行为的分子解释

Structural comparison of highly similar nucleoside-diphosphate kinases: Molecular explanation of distinct membrane-binding behavior.

作者信息

Francois-Moutal L, Marcillat O, Granjon T

机构信息

Université de Lyon, Université Lyon 1, CNRS, UMR 5246 ICBMS, Institut de Chimie et Biochimie Moléculaires et Supramoléculaires, IMBL, 43 Bd du 11 Novembre 1918, F-69622 Villeurbanne cedex, France.

Université de Lyon, Université Lyon 1, CNRS, UMR 5246 ICBMS, Institut de Chimie et Biochimie Moléculaires et Supramoléculaires, IMBL, 43 Bd du 11 Novembre 1918, F-69622 Villeurbanne cedex, France.

出版信息

Biochimie. 2014 Oct;105:110-8. doi: 10.1016/j.biochi.2014.06.025. Epub 2014 Jul 7.

Abstract

NDPK-A, NDPK-B and NDPK-D are three enzymes which belong to the NDPK group I isoforms and are not only involved in metabolism process but also in transcriptional regulation, DNA cleavage, histidine protein kinase activity and metastasis development. Those enzymes were reported to bind to membranes either in mitochondria where NDPK-D influences cardiolipin lateral organization and is thought to be involved in apoptotic pathway or in cytosol where NDPK-A and NDPK-B membrane association was shown to influence several cellular processes like endocytosis, cellular adhesion, ion transport, etc. However, despite numerous studies, the role of NDPK-membrane association and the molecular details of the binding process are still elusive. In the present work, a comparative study of the three NDPK isoforms allowed us to show that although membrane binding is a common feature of these enzymes, mechanisms differ at the molecular scale. NDPK-A was not able to bind to model membranes mimicking the inner leaflet of plasma membrane, suggesting that its in vivo membrane association is mediated by a non-lipidic partner or other partners than the studied phospholipids. On the contrary, NDPK-B and NDPK-D were shown to bind efficiently to liposomes mimicking plasma membrane and mitochondrial inner membrane respectively but details of the binding mechanism differ between the two enzymes as NDPK-B binding necessarily involved an anionic phospholipid partner while NDPK-D can bind either zwitterionic or anionic phospholipids. Although sharing similar secondary structure and homohexameric quaternary arrangement, tryptophan fluorescence revealed fine disparities in NDPK tertiary structures. Interfacial behavior as well as ANS fluorescence showed further dissimilarities between NDPK isoforms, notably the presence of distinct accessible hydrophobic areas as well as different capacity to form Gibbs monolayers related to their surface activity properties. Those distinct features may contribute to explain the differences in the protein behavior towards membrane binding.

摘要

NDPK-A、NDPK-B和NDPK-D是三种属于NDPK第一组同工型的酶,它们不仅参与代谢过程,还参与转录调控、DNA切割、组氨酸蛋白激酶活性和转移发展。据报道,这些酶可与线粒体膜结合,其中NDPK-D影响心磷脂侧向组织,被认为参与凋亡途径;或者与细胞质膜结合,其中NDPK-A和NDPK-B的膜结合被证明会影响多种细胞过程,如内吞作用、细胞黏附、离子运输等。然而,尽管进行了大量研究,NDPK与膜结合的作用以及结合过程的分子细节仍然不清楚。在本研究中,对三种NDPK同工型的比较研究使我们能够表明,尽管膜结合是这些酶的共同特征,但分子水平上的机制有所不同。NDPK-A无法与模拟质膜内小叶的模型膜结合,这表明其在体内的膜结合是由非脂质伴侣或除所研究的磷脂之外的其他伴侣介导的。相反,NDPK-B和NDPK-D分别被证明能有效地与模拟质膜和线粒体内膜的脂质体结合,但两种酶的结合机制细节不同,因为NDPK-B的结合必然涉及阴离子磷脂伴侣,而NDPK-D可以结合两性离子或阴离子磷脂。尽管具有相似的二级结构和同六聚体四级排列,但色氨酸荧光显示NDPK三级结构存在细微差异。界面行为以及ANS荧光显示NDPK同工型之间存在进一步差异,特别是存在不同的可及疏水区域以及与它们的表面活性性质相关的形成吉布斯单层的不同能力。这些不同特征可能有助于解释蛋白质在膜结合行为上的差异。

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