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蛋白质结构揭示马铃薯天冬氨酸蛋白酶类似 Saposin 结构域与双层膜相互作用

Protein Structure Insights into the Bilayer Interactions of the Saposin-Like Domain of Solanum tuberosum Aspartic Protease.

机构信息

Ontario Agricultural College, University of Guelph, N1G 2W1, Guelph, Ontario, Canada.

Faculty of Land and Food Systems, University of British Columbia, Vancouver, V6T 1Z4, British Columbia, Canada.

出版信息

Sci Rep. 2017 Dec 5;7(1):16911. doi: 10.1038/s41598-017-16734-2.

Abstract

Many plant aspartic proteases contain a saposin-like domain whose principal functions are intracellular sorting and host defence. Its structure is characterised by helical segments cross-linked by three highly conserved cystines. The present study on the saposin-like domain of Solanum tuberosum aspartic protease revealed that acidification from inactive to active conditions causes dimerisation and a strand-to-helix secondary structure transition independent of bilayer interaction. Bilayer fusion was shown to occur under reducing conditions yielding a faster shift to larger vesicle sizes relative to native conditions, implying that a lower level structural motif might be bilayer-active. Characterisation of peptide sequences based on the domain's secondary structural regions showed helix-3 to be active (~4% of the full domain's activity), and mutation of its sole positively charged residue resulted in loss of activity and disordering of structure. Also, the peptides' respective circular dichroism spectra suggested that native folding within the full domain is dependent on surrounding structure. Overall, the present study reveals that the aspartic protease saposin-like domain active structure is an open saposin fold dimer whose formation is pH-dependent, and that a bilayer-active motif shared among non-saposin membrane-active proteins including certain plant defence proteins is nested within an overall structure essential for native functionality.

摘要

许多植物天冬氨酸蛋白酶含有一个类脂转移蛋白样结构域,其主要功能是细胞内分拣和宿主防御。其结构的特点是由三个高度保守的半胱氨酸交联的螺旋片段。本研究对马铃薯天冬氨酸蛋白酶的类脂转移蛋白样结构域进行了研究,结果表明,从非活性状态到活性状态的酸化会导致二聚化和链到螺旋的二级结构转变,而无需双层相互作用。已经表明双层融合在还原条件下发生,相对于天然条件,更快地向更大的囊泡大小转变,这意味着更低水平的结构基序可能是双层活性的。基于该结构域的二级结构区域的肽序列的特征化表明,螺旋 3 是活性的(~整个结构域活性的 4%),并且其唯一的正电荷残基的突变导致活性丧失和结构无序。此外,肽的各自圆二色光谱表明,完整结构域内的天然折叠依赖于周围结构。总的来说,本研究揭示了天冬氨酸蛋白酶类脂转移蛋白样结构域的活性结构是一个开放的类脂转移蛋白折叠二聚体,其形成依赖于 pH 值,并且在包括某些植物防御蛋白在内的非类脂转移蛋白膜活性蛋白中共享的双层活性基序嵌套在对于天然功能至关重要的整体结构内。

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