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REGULATION OF GHRELIN STRUCTURE AND MEMBRANE BINDING BY PHOSPHORYLATION

机译:磷酸化对生长素释放肽结构和膜结合的调节

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摘要

The peptide hormone ghrelin requires Ser-3 acylation for receptor binding, orexigenic and anti-inflammatory effects. Functions of desacylghrelin are less well understood. In vitro kinase assays reveal that the evolutionarily conserved Ser-18 in the basic C-terminus is an excellent substrate for protein kinase C. Circular dichroism reveals that desacylghrelin is ~12 % helical in aqueous solution and ~ 50 % helical in trifluoroethanol. Ser-18-phosphorylation, Ser-18-Ala substitution, or Ser-3-acylation reduces the helical character in trifluoroethanol to ~ 24 %. Both ghrelin and desacylghrelin bind to phosphatidylcholine:phosphatidylserine sucrose-loaded vesicles in a phosphatidylserine-dependent manner. Phosphoghrelin and phosphodesacylghrelin show greatly diminished phosphatidylserine-dependent binding. These results are consistent with binding of ghrelin and desacylghrelin to acidic lipids via the basic face of an amphipathic helix with Ser-18 phosphorylation disrupting both helical character and membrane binding.
机译:肽激素ghrelin需要Ser-3酰化才能实现受体结合,致癌和抗炎作用。对去糖基生长素的功能的了解较少。体外激酶测定表明,在碱性C末端进化上保守的Ser-18是蛋白激酶C的极佳底物。圆二色性表明,脱酰基ghrelin在水溶液中约为12%螺旋,在三氟乙醇中约为50%螺旋。 Ser-18磷酸化,Ser-18-Ala取代或Ser-3-酰化可将三氟乙醇中的螺旋特性降低至〜24%。 ghrelin和desacylghrelin都以磷脂酰丝氨酸依赖性方式结合磷脂酰胆碱:磷脂酰丝氨酸蔗糖负载的囊泡。磷酸ghrelin和磷酸desacylghrelin显示大大减少了磷脂酰丝氨酸依赖性结合。这些结果与生长素释放肽和去糖基生长素释放肽通过两亲性螺旋的基本面与Ser-18磷酸化破坏螺旋特性和膜结合的酸性表面结合到酸性脂质上是一致的。

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