磷脂酰肌醇磷脂酶C
磷脂酶
磷脂酶A1
单体
生物化学
磷脂酶D
磷脂酶C
酶
磷脂
磷脂酶A
C2域
磷脂酶A2
化学
立体化学
拟南芥
生物
膜
基因
有机化学
突变体
聚合物
作者
Yunseok Heo,Inhwan Lee,Sunjin Moon,Ji-Hye Yun,Eun Yu Kim,Sam‐Yong Park,Jae‐Hyun Park,Woo Taek Kim,Weontae Lee
出处
期刊:Molecules
[MDPI AG]
日期:2022-04-02
卷期号:27 (7): 2317-2317
被引量:1
标识
DOI:10.3390/molecules27072317
摘要
Phospholipase is an enzyme that hydrolyzes various phospholipid substrates at specific ester bonds and plays important roles such as membrane remodeling, as digestive enzymes, and the regulation of cellular mechanism. Phospholipase proteins are divided into following the four major groups according to the ester bonds they cleave off: phospholipase A1 (PLA1), phospholipase A2 (PLA2), phospholipase C (PLC), and phospholipase D (PLD). Among the four phospholipase groups, PLA1 has been less studied than the other phospholipases. Here, we report the first molecular structures of plant PLA1s: AtDSEL and CaPLA1 derived from Arabidopsis thaliana and Capsicum annuum, respectively. AtDSEL and CaPLA1 are novel PLA1s in that they form homodimers since PLAs are generally in the form of a monomer. The dimerization domain at the C-terminal of the AtDSEL and CaPLA1 makes hydrophobic interactions between each monomer, respectively. The C-terminal domain is also present in PLA1s of other plants, but not in PLAs of mammals and fungi. An activity assay of AtDSEL toward various lipid substrates demonstrates that AtDSEL is specialized for the cleavage of sn-1 acyl chains. This report reveals a new domain that exists only in plant PLA1s and suggests that the domain is essential for homodimerization.
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