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卡氏棘阿米巴的阿米巴样运动,特别涉及细胞与基质的相互作用。

Amoeboid locomotion of Acanthamoeba castellanii with special reference to cell-substratum interactions.

作者信息

Preston T M, King C A

出版信息

J Gen Microbiol. 1984 Sep;130(9):2317-23. doi: 10.1099/00221287-130-9-2317.

Abstract

The amoeboid locomotion of Acanthamoeba castellanii has been studied by observation of individual cells moving on a planar glass substratum. Cell-substratum interactions involved in traction have been observed by reflexion interference microscopy. A variable part of the ventral surface of A. castellanii formed a protean platform, the 'associated contact', from which filopodia were subtended; these established stable, focal adhesions (approximately 0.4 micron diameter) on the substratum beneath. Surprisingly, acanthopodia, a prominent feature of this protozoon, did not play an obvious role in traction. The dimensions of the cell-substratum gap in the associated contact could be modulated by the concentration of ambient electrolyte. Dilution of electrolyte from 50 mM-KC1 to 2mM resulted in (i) an increase in the cell-substratum gap, (ii) a marked decrease in cell motility, (iii) reduced cell adhesion to glass.

摘要

通过观察在平面玻璃基质上移动的单个细胞,对卡氏棘阿米巴的阿米巴样运动进行了研究。通过反射干涉显微镜观察了参与牵引的细胞-基质相互作用。卡氏棘阿米巴腹面的可变部分形成了一个多变的平台,即“相关接触”,从该平台上伸出丝状伪足;这些丝状伪足在下方的基质上建立了稳定的局灶性黏附(直径约0.4微米)。令人惊讶的是,这种原生动物的一个显著特征——棘状伪足,在牵引过程中并未发挥明显作用。相关接触中细胞-基质间隙的大小可由周围电解质的浓度调节。将电解质从50 mM-KCl稀释至2 mM会导致:(i)细胞-基质间隙增大;(ii)细胞运动性显著降低;(iii)细胞与玻璃的黏附减少。

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