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线粒体 ADP/ATP 载体上特定心磷脂结合位点的功能相关不对称性。

Function-related asymmetry of the specific cardiolipin binding sites on the mitochondrial ADP/ATP carrier.

机构信息

Division of Medical Genetics and Genomics, The Children's Hospital, Zhejiang University School of Medicine, Hangzhou, Zhejiang 310052, China; Institute of Genetics, Department of Genetics, Zhejiang University School of Medicine, Hangzhou, Zhejiang 310058, China.

Department of Urology, The Children's Hospital, Zhejiang University School of Medicine, National Clinical Research Center for Child Health and National Children's Regional Medical Center, Hangzhou, Zhejiang 310052, China.

出版信息

Biochim Biophys Acta Biomembr. 2021 Jan 1;1863(1):183466. doi: 10.1016/j.bbamem.2020.183466. Epub 2020 Aug 29.

Abstract

The ADP/ATP carrier (AAC) transports matrix ATP and cytosolic ADP across the inner mitochondrial membrane (IMM). It is well known that cardiolipin (CL) plays an important role in regulating the function of AAC, yet the underlying mechanism still remains elusive. AAC is composed of three homologous domains, and three specific CL binding sites are located at the domain-domain interfaces near the matrix side. Here we report an in-depth investigation on the dynamic properties of the bound CL within the three specific sites through all-atom molecular dynamics simulations of up to 13 μs in total. Our results highlight the importance of the basic and polar residues in CL binding. The basic residues from the linker helix and/or the [Y/W/F][K/R]G motif enable the bound CL to form an intra-domain binding mode, and the canonical inter-domain binding mode only forms when these basic residues are occupied by an additional phospholipid. Of special significance, differences in the basic and polar residues lead to remarkable asymmetry among the three specific CL binding sites. We found that the bound CL at the interface of domains 2 and 3 predominantly adopts inter-domain binding mode, while CLs at the other two sites have much more intra-domain populations. This is consistent with the asymmetric crystal structure of the matrix state (m-state) AAC which implies an asymmetric transport mechanism. The dynamic equilibrium between the inter-domain and intra-domain binding modes observed in our simulations could be highly important for the bound CLs to adapt to the movements during state transitions.

摘要

ADP/ATP 载体(AAC)将基质 ATP 和胞质 ADP 跨线粒体内膜(IMM)转运。众所周知,心磷脂(CL)在调节 AAC 的功能方面起着重要作用,但潜在的机制仍不清楚。AAC 由三个同源结构域组成,三个特定的 CL 结合位点位于靠近基质侧的结构域-结构域界面处。在这里,我们通过总共长达 13μs 的全原子分子动力学模拟,对三个特定位点内结合的 CL 的动态特性进行了深入研究。我们的结果强调了 CL 结合中碱性和极性残基的重要性。来自连接螺旋和/或 [Y/W/F][K/R]G 模体的碱性残基使结合的 CL 形成域内结合模式,只有当这些碱性残基被额外的磷脂占据时,才会形成典型的域间结合模式。特别重要的是,碱性和极性残基的差异导致三个特定的 CL 结合位点之间存在显著的不对称性。我们发现,结构域 2 和 3 界面处的结合 CL 主要采用域间结合模式,而另外两个位点的 CL 具有更多的域内群体。这与基质状态(m 状态)AAC 的不对称晶体结构一致,这意味着存在不对称的转运机制。我们在模拟中观察到的域间和域内结合模式之间的动态平衡对于结合 CL 适应状态转变过程中的运动可能非常重要。

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