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人红细胞膜4.5带蛋白的细胞松弛素B结合成分的蛋白水解切割

Proteolytic cleavages of cytochalasin B binding components of band 4.5 proteins of the human red blood cell membrane.

作者信息

Deziel M R, Rothstein A

出版信息

Biochim Biophys Acta. 1984 Sep 19;776(1):10-20. doi: 10.1016/0005-2736(84)90245-1.

Abstract

The putative hexose transport component of Band 4.5 protein of the human erythrocyte membrane was covalently photolabelled with [3H]cytochalasin B. Its transmembrane topology was investigated by electrophoretically monitoring the effect of proteinases applied to intact erythrocytes, unsealed ghosts, and a reconstituted system. Band 4.5 was resistant to proteolytic digestion at the extracellular face of the membrane in intact cells at both high and low ionic strengths. Proteolysis at the cytoplasmic face of the membrane in ghosts or reconstituted vesicles resulted in cleavage of the transporter into two membrane-bound fragments, a peptide of about 30 kDa that contained its carbohydrate moiety, and a 20 000 kDa nonglycosylated peptide that bore the cytochalasin B label. Because it is produced by a cleavage at the cytoplasmic face and because the carbohydrate moiety is known to be exposed to the outside, the larger fragment must cross the bilayer. It has been reported that the Band 4.5 sugar transporter may be derived from Band 3 peptides by endogenous proteolysis, but the cleavage pattern found in the present study differs markedly from that previously reported for Band 3. Minimization of endogenous proteolysis by use of fresh cells, proteinase inhibitors, immediate use of ghosts and omission of the alkaline wash resulted in no change in the incorporation of [3H]cytochalasin B into Band 4.5, and no labelling of Band 3 polypeptides. These results suggest that the cytochalasin B binding component of Band 4.5 is not the product of proteolytic degradation of a Band 3 component.

摘要

用人红细胞膜带4.5蛋白的假定己糖转运成分与[3H]细胞松弛素B进行共价光标记。通过电泳监测蛋白酶作用于完整红细胞、未封闭的血影和重组系统的效果,研究其跨膜拓扑结构。在高离子强度和低离子强度下,完整细胞中膜的细胞外表面的带4.5对蛋白酶消化具有抗性。血影或重组囊泡中膜的细胞质表面的蛋白水解导致转运蛋白裂解为两个膜结合片段,一个约30 kDa的肽段,包含其碳水化合物部分,以及一个20 000 kDa的非糖基化肽段,带有细胞松弛素B标记。由于它是由细胞质表面的裂解产生的,并且已知碳水化合物部分暴露于外部,较大的片段必须穿过双层膜。据报道,带4.5糖转运蛋白可能是由带3肽通过内源性蛋白水解产生的,但本研究中发现的裂解模式与先前报道的带3的裂解模式明显不同。使用新鲜细胞、蛋白酶抑制剂、立即使用血影和省略碱性洗涤来最小化内源性蛋白水解,导致[3H]细胞松弛素B掺入带4.5中没有变化,并且没有带3多肽的标记。这些结果表明,带4.5的细胞松弛素B结合成分不是带3成分蛋白水解降解的产物。

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