作者
Margaret N Holme, M Harunur Rashid, Michael R Thomas, Hanna MG Barriga, Karla− Luise Herpoldt, Richard K Heenan, Cecile A Dreiss, Jose Leobardo Banuelos, Hai-nan Xie, Irene Yarovsky, Molly M Stevens
发表日期
2018/8/6
期刊
ACS Central Science
卷号
4
期号
8
页码范围
1023-1030
出版商
American Chemical Society
简介
Understanding the origins of lipid membrane bilayer rearrangement in response to external stimuli is an essential component of cell biology and the bottom-up design of liposomes for biomedical applications. The enzymes phospholipase C and D (PLC and PLD) both cleave the phosphorus–oxygen bonds of phosphate esters in phosphatidylcholine (PC) lipids. The atomic position of this hydrolysis reaction has huge implications for the stability of PC-containing self-assembled structures, such as the cell wall and lipid-based vesicle drug delivery vectors. While PLC converts PC to diacylglycerol (DAG), the interaction of PC with PLD produces phosphatidic acid (PA). Here we present a combination of small-angle scattering data and all-atom molecular dynamics simulations, providing insights into the effects of atomic-scale reorganization on the supramolecular assembly of PC membrane bilayers upon enzyme …
引用总数
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