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疟原虫进入红细胞。红细胞与寄生虫之间的移动连接。

Erythrocyte entry by malarial parasites. A moving junction between erythrocyte and parasite.

作者信息

Aikawa M, Miller L H, Johnson J, Rabbege J

出版信息

J Cell Biol. 1978 Apr;77(1):72-82. doi: 10.1083/jcb.77.1.72.

Abstract

Invasion of erythrocytes by merozoites of the monkey malaria, Plasmodium knowlesi, was investigated by electron microscopy. The apical end of the merozoite makes initial contact with the erythrocyte, creating a small depression in the erythrocyte membrane. The area of the erythrocyte membrane to which the merozoite is attached becomes thickened and forms a junction with the plasma membrane of the merozoite. As the merozoite enters the invagination in the erythrocyte surface, the junction, which is in the form of a circumferential zone of attachment between the erythrocyte and merozoite, moves along the confronted membranes to maintain its position at the orifice of the invagination. When entry is completed, the orifice closes behind the parasite in the fashion of an iris diaphragm, and the junction becomes a part of the parasitophorous vacuole. The movement of the junction during invasion is an important component of the mechanism by which the merozoite enters the erythrocyte. The extracellular merozoite is covered with a prominent surface coat. During invasion, this coat appears to be absent from the portion of the merozoite within the erythrocyte invagination, but the density of the surface coat outside the invagination (beyond the junction) is unaltered.

摘要

利用电子显微镜研究了诺氏疟原虫(一种猴疟原虫)裂殖子对红细胞的入侵过程。裂殖子的顶端首先与红细胞接触,在红细胞膜上形成一个小凹陷。裂殖子附着处的红细胞膜区域变厚,并与裂殖子的质膜形成一个连接。当裂殖子进入红细胞表面的内陷时,这个连接(以红细胞和裂殖子之间的圆周附着带的形式存在)沿着相对的膜移动,以保持其在凹陷口处的位置。当进入完成后,凹陷口以虹膜隔膜的方式在寄生虫后面关闭,连接成为寄生泡的一部分。入侵过程中连接的移动是裂殖子进入红细胞机制的一个重要组成部分。细胞外的裂殖子覆盖着一层明显的表面被膜。在入侵过程中,红细胞内陷内的裂殖子部分似乎没有这层被膜,但内陷外(超出连接)的表面被膜密度未改变。

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