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腹水肿瘤细胞微绒毛细胞表面糖蛋白的拓扑结构及与微丝核心的关联

Topography and microfilament core association of a cell surface glycoprotein of ascites tumor cell microvilli.

作者信息

Sheng Z, Vanderpuye O A, Hull S R, Carraway C A, Carraway K L

机构信息

Department of Biochemistry, University of Miami School of Medicine, Florida 33101.

出版信息

J Cell Biochem. 1989 Aug;40(4):453-66. doi: 10.1002/jcb.240400406.

Abstract

Membrane-microfilament interactions are being investigated in microvilli isolated from 13762 rat mammary ascites tumor cells. These microvilli are covered by a sialomucin complex, composed of the sialomucin ascites sialoglycoprotein-1 (ASGP-1) and the associated concanavalin A (Con A)-binding glycoprotein ASGP-2. Limited proteolysis of the microvilli releases large, highly glycosylated fragments of ASGP-1 from the microvilli and increases the association of ASGP-2 with the Triton-insoluble microvillar microfilament core (Vanderpuye OA, Carraway CAC, Carraway, KL: Exp Cell Res 178:211, 1988). To analyze the topography of ASGP-2 in the membrane and its association with the microfilament core, microvilli were treated with proteinase K for timed intervals and centrifuged. The pelleted microvilli were extracted with Triton X-100 for the preparation of microfilament cores and Triton-soluble proteins or with 0.1 M carbonate, pH 11, for the preparation of microvillar membranes depleted of peripheral membrane proteins. These microvilli fractions were analyzed by dodecyl sulfate gel electrophoresis, lectin blotting with Con A and L-phytohemagglutinin, and immunoblotting with anti-ASGP-2. The earliest major proteolysis product from this procedure was a 70 kDa membrane-bound fragment. At longer times a 60 kDa released fragment, 30-40 kDa Triton-soluble fragments, and 25-30 kDa membrane- and microfilament-associated fragments were observed. Phalloidin shift analysis of microfilament-associated proteins on velocity sedimentation gradients indicated that the 25-30 kDa fragments were strongly associated with the microfilament core. From these studies we propose that ASGP-2 has a site for indirect association with the microfilament core near the membrane on a 15-20 kDa segment.

摘要

正在对从13762大鼠乳腺腹水肿瘤细胞分离出的微绒毛中的膜 - 微丝相互作用进行研究。这些微绒毛被一种唾液酸粘蛋白复合物覆盖,该复合物由唾液酸粘蛋白腹水唾液糖蛋白 -1(ASGP -1)和相关的伴刀豆球蛋白A(Con A)结合糖蛋白ASGP -2组成。对微绒毛进行有限的蛋白酶解会从微绒毛中释放出大的、高度糖基化的ASGP -1片段,并增加ASGP -2与不溶于 Triton的微绒毛微丝核心的结合(Vanderpuye OA,Carraway CAC,Carraway,KL:Exp Cell Res 178:211,1988)。为了分析ASGP -2在膜中的拓扑结构及其与微丝核心的结合,用蛋白酶K对微绒毛进行定时处理并离心。将沉淀的微绒毛用 Triton X -100提取以制备微丝核心和 Triton可溶性蛋白,或用0.1 M碳酸盐(pH 11)提取以制备去除外周膜蛋白的微绒毛膜。通过十二烷基硫酸钠凝胶电泳、用Con A和L -植物血凝素进行凝集素印迹以及用抗ASGP -2进行免疫印迹对这些微绒毛组分进行分析。该过程最早的主要蛋白水解产物是一个70 kDa的膜结合片段。在较长时间时,观察到一个60 kDa的释放片段、30 - 40 kDa的 Triton可溶性片段以及25 - 30 kDa的膜和微丝相关片段。对速度沉降梯度上微丝相关蛋白进行鬼笔环肽迁移分析表明,25 - 30 kDa片段与微丝核心紧密结合。从这些研究中我们提出,ASGP -2在膜附近的一个15 - 20 kDa片段上有一个与微丝核心间接结合的位点。

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