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首页> 外文期刊>FEBS Letters >Role of sphingomyelinase and ceramide in modulating rafts: do biophysical properties determine biologic outcome?
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Role of sphingomyelinase and ceramide in modulating rafts: do biophysical properties determine biologic outcome?

机译:鞘磷脂酶和神经酰胺在调节筏中的作用:生物物理特性是否决定生物学结果?

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>Recent biophysical data suggest that the properties of ceramide observed in model membranes may apply to biological systems. In particular, the ability of ceramide to form microdomains, which coalesce into larger platforms or macrodomains, appears to be important for some cellular signaling processes. Several laboratories have now demonstrated similar reorganization of plasma membrane sphingolipid rafts, via ceramide generation, into macrodomains. This event appeared necessary for signaling upon activation of a specific set of cell surface receptors. In this article, we review the properties and functions of rafts, and the role of sphingomyelinase and ceramide in the biogenesis and re-modeling of these rafts. As clustering of some cell surface receptors in these domains may be critical for signal transduction, we propose a new model for transmembrane signal transmission.
机译:最新的生物物理数据表明,在模型膜中观察到的神经酰胺特性可能适用于生物系统。特别地,神经酰胺形成聚结为更大平台或大域的微区的能力对于某些细胞信号传导过程似乎很重要。现在有几个实验室已经证明,通过神经酰胺的产生,质膜鞘脂筏的类似重组可以变成大域。该事件似乎是激活一组特定的细胞表面受体信号传导所必需的。在本文中,我们回顾了筏的性质和功能,以及鞘磷脂酶和神经酰胺在这些筏的生物发生和重塑中的作用。由于这些域中某些细胞表面受体的聚集对于信号转导可能至关重要,因此我们提出了跨膜信号传输的新模型。

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