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Proteolysis sensitizes LDL particles to phospholipolysis by secretory phospholipase A2 group V and secretory sphingomyelinase

机译:蛋白水解通过分泌性磷脂酶A2组V和分泌性鞘磷脂酶使LDL颗粒对磷脂酶解敏感

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摘要

LDL particles that enter the arterial intima become exposed to proteolytic and lipolytic modifications. The extracellular hydrolases potentially involved in LDL modification include proteolytic enzymes, such as chymase, cathepsin S, and plasmin, and phospholipolytic enzymes, such as secretory phospholipases A2 (sPLA2-IIa and sPLA2-V) and secretory acid sphingomyelinase (sSMase). Here, LDL was first proteolyzed and then subjected to lipolysis, after which the effects of combined proteolysis and lipolysis on LDL fusion and on binding to human aortic proteoglycans (PG) were studied. Chymase and cathepsin S led to more extensive proteolysis and release of peptide fragments from LDL than did plasmin. sPLA2-IIa was not able to hydrolyze unmodified LDL, and even preproteolysis of LDL particles failed to enhance lipolysis by this enzyme. However, preproteolysis with chymase and cathepsin S accelerated lipolysis by sPLA2-V and sSMase, which resulted in enhanced fusion and proteoglycan binding of the preproteolyzed LDL particles. Taken together, the results revealed that proteolysis sensitizes the LDL particles to hydrolysis by sPLA2-V and sSMase. By promoting fusion and binding of LDL to human aortic proteoglycans, the combination of proteolysis and phospholipolysis of LDL particles potentially enhances extracellular accumulation of LDL-derived lipids during atherogenesis.
机译:进入动脉内膜的LDL颗粒暴露于蛋白水解和脂解修饰。可能参与LDL修饰的细胞外水解酶包括蛋白水解酶(例如糜酶,组织蛋白酶S和纤溶酶)以及磷酸脂解酶(例如分泌型磷脂酶A2(sPLA2-IIa和sPLA2-V)和分泌型酸性鞘磷脂酶(sSMase))。在此,首先对LDL进行蛋白水解,然后进行脂解,然后研究了蛋白水解和脂解联合对LDL融合和与人主动脉蛋白聚糖(PG)结合的影响。纤维蛋白溶酶和组织蛋白酶S比纤溶酶导致更广泛的蛋白水解和从LDL释放肽片段。 sPLA2-IIa不能水解未修饰的LDL,甚至LDL颗粒的预蛋白水解也无法增强该酶的脂解作用。但是,用糜蛋白酶和组织蛋白酶S进行的预蛋白水解作用可加速sPLA2-V和sSMase的脂解作用,从而增强了预蛋白水解LDL颗粒的融合和蛋白聚糖结合。两者合计,结果表明蛋白水解使LDL颗粒对sPLA2-V和sSMase水解敏感。通过促进LDL与人主动脉蛋白聚糖的融合和结合,LDL颗粒的蛋白水解和磷酸脂解的组合可潜在地增强动脉粥样硬化形成过程中LDL衍生脂质的细胞外积累。

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