视网膜认知素在体外膜相互作用中不与自身结合

N.M. Troccoli, R.E. Hausman
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引用次数: 10

摘要

视网膜认知蛋白(R-cognin)是脊椎动物视网膜细胞的一种内在膜蛋白,在发育过程中支持组织特异性细胞粘附并介导细胞类型特异性关联。作为了解R-cognin如何介导视网膜细胞膜特异性粘附的第一步,我们询问了cognin是否与另一种cognin分子或不同的大分子(一种可能的cognin结合蛋白)结合。为此,我们将视网膜细胞膜蛋白(富含cognin)与基质结合,构建了亲和柱。将视网膜细胞膜的洗涤剂提取物中的蛋白质暴露于该基质中,并通过免疫电泳特异性洗脱和鉴定结合的蛋白质。其中最突出的是一种表观质量为64 kDa的蛋白质。该物质与色谱柱的结合被cognin抗体阻断。为了消除体外分子相互作用可能产生的伪影,我们寻求了64 kDa蛋白实际上结合R-cognin的独立证实。利用改进的视网膜膜囊泡系统,我们询问在囊泡聚集过程中哪些蛋白质可能与cognin光亲和交联。交联在凝胶上产生一个114 kDa的复合物,在还原条件下可分解为50 kDa (cognin)和64 kDa的条带。通过独立技术鉴定了一个64 kDa蛋白,表明cognin通过与该大分子或这些分子结合来促进胚胎鸡神经视网膜细胞的结合。在机制的第二个组成部分的鉴定应该允许阐明在神经视网膜发育中介导细胞-细胞相互作用的cognin的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Retina cognin does not bind to itself during membrane interaction in vitro

Retina cognin (R-cognin) is an intrinsic membrane protein of vertebrate retinal cells which supports tissue-specific cell adhesion and mediates cell type-specific associations during development. As a first step in understanding how R-cognin mediates specific adhesion of retinal cell membranes, we asked if cognin bound to another cognin molecule or to a different macromolecule, a possible cognin-binding protein. To do this, we constructed an affinity column with retinal cell membrane proteins (enriched for cognin) bound to the matrix. Proteins in a detergent extract of retinal cell membranes were exposed to this matrix and those which bound specifically eluted and identified by immunoelectrophoresis. Most prominent among these was a protein with an apparent mass of 64 kDa. The binding of this material to the column was blocked by cognin antibody. To eliminate possible artifacts of molecular interactions in vitro, we sought independent confirmation that 64 kDa protein actually bound R-cognin. Using a modified retina membrane vesicle system, we asked what proteins could be photoaffinity cross-linked to cognin during vesicle aggregation. Cross-linking produced a 114 kDa complex on gels which could be resolved into a 50 kDa (cognin) and a 64 kDa band under reducing conditions. Identification of a 64 kDa protein by independent techniques suggests that cognin promotes association of embryonic chick neural retina cells by binding to this macromolecule or these molecules. Identification of a second component in the mechanism should allow elucidation of cognin's role in mediating cell-cell interactions in developing neural retina.

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