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底物通过磷脂转运P4-ATP酶的轨迹。

Substrate trajectory through phospholipid-transporting P4-ATPases.

作者信息

Williamson Patrick

机构信息

*Department of Biology and Program in Biochemistry and Biophysics, Amherst College, Amherst, MA 01002, U.S.A.

出版信息

Biochem Soc Trans. 2014 Oct;42(5):1367-71. doi: 10.1042/BST20140137.

Abstract

A difference in the lipid composition between the two leaflets of the same membrane is a relatively simple instance of lipid compositional heterogeneity. The large activation energy barrier for transbilayer movement for some (but not all) membrane lipids creates a regime governed by active transport processes. An early step in eukaryote evolution was the development of a capacity for generating transbilayer compositional heterogeneity far from equilibrium by directly tapping energy from the ATP pool. The mechanism of the P-type ATPases that create lipid asymmetry is well understood in terms of ATP hydrolysis, but the trajectory taken by the phospholipid substrate through the enzyme is a matter of current active research. There are currently three different models for this trajectory, all with support by mutation/activity measurements and analogies with known atomic structures.

摘要

同一膜的两个小叶之间脂质组成的差异是脂质组成异质性的一个相对简单的例子。某些(但不是所有)膜脂跨双层移动的巨大活化能障碍创造了一个由主动运输过程控制的机制。真核生物进化的早期步骤是发展出一种能力,即通过直接从ATP池中获取能量,在远离平衡的情况下产生跨双层组成异质性。产生脂质不对称性的P型ATP酶的机制在ATP水解方面已得到很好的理解,但磷脂底物通过该酶的轨迹是当前活跃研究的课题。目前有三种不同的该轨迹模型,所有这些模型都得到了突变/活性测量以及与已知原子结构类比的支持。

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