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类囊体脂在原叶绿素氧化还原酶激活中的作用:通过计算研究阐明变构机制。

Role of Thylakoid Lipids in Protochlorophyllide Oxidoreductase Activation: Allosteric Mechanism Elucidated by a Computational Study.

机构信息

College of Science, China Agricultural University, Beijing 100193, China.

出版信息

Int J Mol Sci. 2022 Dec 24;24(1):307. doi: 10.3390/ijms24010307.

Abstract

Light-dependent protochlorophyllide oxidoreductase (LPOR) is a chlorophyll synthetase that catalyzes the reduction of protochlorophyllide (Pchlide) to chlorophyllide (Chlide) with indispensable roles in regulating photosynthesis processes. A recent study confirmed that thylakoid lipids (TL) were able to allosterically enhance modulator-induced LPOR activation. However, the allosteric modulation mechanism of LPOR by these compounds remains unclear. Herein, we integrated multiple computational approaches to explore the potential cavities in the LPOR and an allosteric site around the helix-G region where high affinity for phosphatidyl glycerol (PG) was identified. Adopting accelerated molecular dynamics simulation for different LPOR states, we rigorously analyzed binary LPOR/PG and ternary LPOR/NADPH/PG complexes in terms of their dynamics, energetics, and attainable allosteric regulation. Our findings clarify the experimental observation of increased NADPH binding affinity for LPOR with PGs. Moreover, the simulations indicated that allosteric regulators targeting LPOR favor a mechanism involving lid opening upon binding to an allosteric hinge pocket mechanism. This understanding paves the way for designing novel LPOR activators and expanding the applications of LPOR.

摘要

光依赖型原叶绿素氧化还原酶(LPOR)是一种叶绿素合成酶,它能催化原叶绿素(Pchlide)还原为叶绿素(Chlide),在调节光合作用过程中起着不可或缺的作用。最近的一项研究证实,类囊体脂质(TL)能够变构增强调节剂诱导的 LPOR 激活。然而,这些化合物对 LPOR 的变构调节机制尚不清楚。本文综合了多种计算方法,探讨了 LPOR 中的潜在腔和螺旋-G 区域周围的变构位点,在该区域中鉴定出了对磷脂酰甘油(PG)的高亲和力。采用不同 LPOR 状态的加速分子动力学模拟,我们从动力学、能量学和可实现的变构调节等方面严格分析了二元 LPOR/PG 和三元 LPOR/NADPH/PG 复合物。我们的研究结果阐明了实验观察到的 LPOR 与 PG 结合时 NADPH 结合亲和力增加的现象。此外,模拟表明,针对 LPOR 的变构调节剂倾向于一种结合到变构铰链口袋机制上的盖子打开机制。这一认识为设计新型 LPOR 激活剂和拓展 LPOR 的应用铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8471/9820216/70d59ba19a08/ijms-24-00307-g001.jpg

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