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与植物类囊体膜不同脂质相相关的结构实体-对不同脂肪酶和蛋白酶的选择性敏感性。

Structural Entities Associated with Different Lipid Phases of Plant Thylakoid Membranes-Selective Susceptibilities to Different Lipases and Proteases.

机构信息

Group of Biophysics, Department of Physics, Faculty of Science, University of Ostrava, 710 00 Ostrava, Czech Republic.

Laboratory of Ecological Plant Physiology, Global Change Research Institute of the Czech Academy of Sciences, 603 00 Brno, Czech Republic.

出版信息

Cells. 2022 Aug 28;11(17):2681. doi: 10.3390/cells11172681.

Abstract

It is well established that plant thylakoid membranes (TMs), in addition to a bilayer, contain two isotropic lipid phases and an inverted hexagonal (H) phase. To elucidate the origin of non-bilayer lipid phases, we recorded the P-NMR spectra of isolated spinach plastoglobuli and TMs and tested their susceptibilities to lipases and proteases; the structural and functional characteristics of TMs were monitored using biophysical techniques and CN-PAGE. Phospholipase-A1 gradually destroyed all P-NMR-detectable lipid phases of isolated TMs, but the weak signal of isolated plastoglobuli was not affected. Parallel with the destabilization of their lamellar phase, TMs lost their impermeability; other effects, mainly on Photosystem-II, lagged behind the destruction of the original phases. Wheat-germ lipase selectively eliminated the isotropic phases but exerted little or no effect on the structural and functional parameters of TMs-indicating that the isotropic phases are located outside the protein-rich regions and might be involved in membrane fusion. Trypsin and Proteinase K selectively suppressed the H phase-suggesting that a large fraction of TM lipids encapsulate stroma-side proteins or polypeptides. We conclude that-in line with the Dynamic Exchange Model-the non-bilayer lipid phases of TMs are found in subdomains separated from but interconnected with the bilayer accommodating the main components of the photosynthetic machinery.

摘要

众所周知,植物类囊体膜(TMs)除双层外,还含有两个各向同性脂质相和一个反式六方(H)相。为了阐明非双层脂质相的起源,我们记录了分离的菠菜质体小球和 TMs 的 P-NMR 光谱,并测试了它们对脂肪酶和蛋白酶的敏感性;使用生物物理技术和 CN-PAGE 监测 TMs 的结构和功能特性。磷脂酶 A1 逐渐破坏了分离的 TMs 中所有可检测到的 P-NMR 脂质相,但分离的质体小球的弱信号不受影响。随着层状相的失稳,TMs 失去了其不可渗透性;其他影响,主要是对光系统-II 的影响,落后于原始相的破坏。小麦胚芽脂肪酶选择性地消除各向同性相,但对 TMs 的结构和功能参数几乎没有影响-表明各向同性相位于富含蛋白质的区域之外,可能参与膜融合。胰蛋白酶和蛋白激酶选择性地抑制 H 相-表明 TMs 的大部分脂质包裹着基质侧的蛋白质或多肽。我们得出的结论是-与动态交换模型一致-TMs 的非双层脂质相存在于与容纳光合作用机器主要成分的双层分离但相互连接的亚域中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1426/9454902/5263a3739279/cells-11-02681-g001.jpg

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