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磷脂膜相关的刷状缘肌球蛋白-I活性

Phospholipid membrane-associated brush border myosin-I activity.

作者信息

Zot H G

机构信息

Department of Physiology, University of Texas Southwestern Medical Center at Dallas 75235-9040, USA.

出版信息

Cell Motil Cytoskeleton. 1995;30(1):26-37. doi: 10.1002/cm.970300105.

Abstract

Brush border myosin-I (BBMI) is associated with the membrane of intestinal epithelial cells where it probably plays a structural role. BBMI also has been identified on Golgi-derived vesicles in intestinal epithelial cells where it may translocate vesicles into the brush border. However, the mechanochemical activity of BBMI bound to a phospholipid membrane has not been described. This study reports that phospholipid membrane-associated BBMI displays ATPase activity when bound to phospholipids, but does not move actin filaments when associated with a phospholipid bilayer. BBMI does not bind significantly to brush border membrane lipids, which contain about 16% phosphatidylserine (PS), in either a pelleting or planar membrane assay. Similarly, planar membranes containing 20% PS do not bind a significant amount of BBMI. Increasing the concentration of PS to 40% does result in the binding of BBMI to both vesicles and planar membranes. This binding is enhanced with increased Ca2+ concentrations. BBMI retains its ATPase activity when bound to phospholipid vesicles containing 40% PS. However, BBMI attached to a phospholipid bilayer surface does not move actin filaments, even though the amount of BBMI bound to the lipid surface, as reflected by the number of actin filaments associated with bilayer-bound BBMI, is sufficient to observe motility in control experiments. When membrane fluidity is reduced by adding cholesterol to the membrane lipids containing 40% PS, BBMI still binds to the membrane, but again no actin filament motility is observed. The lack of binding by BBMI to brush border membrane lipids and the absence of membrane-associated BBMI mechanical activity suggest that factors in addition to membrane lipids are necessary for membrane-associated myosin-I motility.

摘要

刷状缘肌球蛋白-I(BBMI)与肠上皮细胞的膜相关联,在其中它可能发挥结构作用。BBMI也已在肠上皮细胞中源自高尔基体的囊泡上被鉴定出来,在那里它可能将囊泡转运到刷状缘。然而,与磷脂膜结合的BBMI的机械化学活性尚未被描述。本研究报告称,与磷脂膜相关的BBMI在与磷脂结合时显示出ATP酶活性,但与磷脂双层结合时不会移动肌动蛋白丝。在沉淀或平面膜测定中,BBMI与刷状缘膜脂质(其中含有约16%的磷脂酰丝氨酸(PS))的结合并不显著。同样,含有20%PS的平面膜也不会结合大量的BBMI。将PS浓度增加到40%确实会导致BBMI与囊泡和平面膜都结合。随着Ca2+浓度的增加,这种结合会增强。当与含有40%PS的磷脂囊泡结合时,BBMI保留其ATP酶活性。然而,附着在磷脂双层表面的BBMI不会移动肌动蛋白丝,尽管与双层结合的BBMI相关的肌动蛋白丝数量所反映的与脂质表面结合的BBMI量足以在对照实验中观察到运动性。当通过向含有40%PS的膜脂质中添加胆固醇来降低膜流动性时,BBMI仍然与膜结合,但同样没有观察到肌动蛋白丝的运动性。BBMI与刷状缘膜脂质缺乏结合以及与膜相关的BBMI缺乏机械活性表明,除了膜脂质之外,其他因素对于与膜相关的肌球蛋白-I运动性也是必需的。

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