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用离子载体A23187和Ca2+处理的鸡红细胞中的微囊泡形成和鞘磷脂酶激活

Microvesiculation and sphingomyelinase activation in chicken erythrocytes treated with ionophore A23187 and Ca2+.

作者信息

Allan D, Thomas P, Limbrick A R

出版信息

Biochim Biophys Acta. 1982 Dec 8;693(1):53-67. doi: 10.1016/0005-2736(82)90470-9.

Abstract

Treatment of chicken erythrocytes with ionophore A23187 and Ca2+ leads to the disappearance of the marginal band of microtubules and to a release of the constraints which normally maintain the nucleus in a central position in the cells. The consequent close apposition of the nucleus to the plasma membrane may allow nuclear-plasma membrane fusion to occur and subsequently results in the release of microvesicles from the hybrid surface membrane. The remnant cells are spherical, and have nuclei which appear to be partly exocytosed. Concomitant with these morphological changes, there is a breakdown of 20-30% of the total cell sphingomyelin by an endogenous sphingomyelinase which does not require Ca2+ and which releases phosphorylcholine only into the cell interior. It is suggested that the pool of sphingomyelin which is broken down as a consequence of Ca2+ entry into the cells is present in the nuclear membrane and that it becomes available to the plasma membrane sphingomyelinase as a result of the close apposition of nucleus and plasma membrane induced by Ca2+.

摘要

用离子载体A23187和Ca2+处理鸡红细胞,会导致微管边缘带消失,并解除通常将细胞核维持在细胞中央位置的限制。随后细胞核与质膜紧密靠近,可能会使核-质膜融合发生,进而导致微囊泡从混合表面膜释放。残余细胞呈球形,其细胞核似乎有部分被胞吐。伴随着这些形态变化,内源性鞘磷脂酶会使细胞总鞘磷脂分解20% - 30%,该酶不需要Ca2+,且仅将磷酸胆碱释放到细胞内部。有人提出,由于Ca2+进入细胞而分解的鞘磷脂池存在于核膜中,并且由于Ca2+诱导细胞核与质膜紧密靠近,它可供质膜鞘磷脂酶利用。

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