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Changes in membrane biophysical properties induced by sphingomyelinase depend on the sphingolipid N-acyl chain

机译:鞘磷脂酶诱导的膜生物物理特性的变化取决于鞘脂N-酰基链

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摘要

Ceramide (Cer) is involved in the regulation of several cellular processes by mechanisms that depend on Cer-induced changes on membrane biophysical properties. Accumulating evidence shows that Cers with different N-acyl chain composition differentially impact cell physiology, which may in part be due to specific alterations in membrane biophysical properties. We now address how the sphingolipid (SL) N-acyl chain affects membrane properties in cultured human embryonic kidney cells by overexpressing different Cer synthases (CerSs). Our results show an increase in the order of cellular membranes in CerS2-transfected cells caused by the enrichment in very long acyl chain SLs. Formation of Cer upon treatment of cells with bacterial sphingomyelinase promoted sequential changes in the properties of the membranes: after an initial increase in the order of the fluid plasma membrane, reorganization into domains with gel-like properties whose characteristics are dependent on the acyl chain structure of the Cer was observed. Moreover, the extent of alterations of membrane properties correlates with the amount of Cer formed. These data reinforce the significance of Cer-induced changes on membrane biophysical properties as a likely molecular mechanism by which different acyl chain Cers exert their specific biological actions.
机译:神经酰胺(Cer)通过依赖于Cer诱导的膜生物物理特性变化的机制参与几种细胞过程的调节。越来越多的证据表明,具有不同N酰基链组成的Cers差异影响细胞生理,这可能部分是由于膜生物物理特性的特定改变。我们现在讨论鞘脂(SL)N-酰基链如何通过过表达不同的Cer合酶(CerSs)影响培养的人胚胎肾细胞的膜特性。我们的结果表明,由于长酰基链SL的富集,导致CerS2转染的细胞中细胞膜顺序增加。用细菌鞘磷脂酶处理细胞后Cer的形成促进了膜特性的顺序变化:在最初增加了流体质膜的顺序后,重组为具有凝胶样特性的结构域,其特性取决于酰基链结构观察到Cer的变化。而且,膜性质改变的程度与所形成的Cer的量相关。这些数据强调了Cer诱导的膜生物物理特性变化的重要性,因为不同的酰基链Cer发挥其特定的生物学作用可能是分子机制。

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