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Transmembrane orientation of an early biosynthetic form of acetylcholine receptor delta subunit determined by proteolytic dissection in conjunction with monoclonal antibodies

机译:通过蛋白水解解剖结合单克隆抗体确定的乙酰胆碱受体δ亚基的早期生物合成形式的跨膜方向

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摘要

The transmembrane topology of acetylcholine receptor (AChR) delta subunit, synthesized in vitro and co-translationally integrated into dog pancreas rough microsomal membranes, was studied using limited proteolysis and domain-specific immunoprecipitation. Forty-four kilodaltons (kd) of the 65-kd delta subunit comprise a single fragment that is inaccessible to exhaustive proteolytic digestion from the cytoplasmic surface of the membrane by trypsin, chymotrypsin, thermolysin, and pronase. Previously, we have shown that this 44-kd “protected” fragment contains the amino terminus of the intact molecule and all of the core oligosaccharides (Anderson, D.J., P. Walter, and G. Blobel (1982) J. Cell Biol. 93: 501–506). Here we demonstrate that this domain can be further dissected into a 26-kd fragment, together with low molecular weight material, when the membranes are rendered permeable to trypsin by low concentrations of deoxycholate (Kreibich, G., P. Debey, and D. D. Sabatini (1973) J. Cell Biol. 58: 436–462). This 26-kd fragment contains all of the core oligosaccharides present on the intact subunit and therefore constitutes at least part, if not all, of the extracellular domain. The remaining low molecular weight material may derive from the membrane-embedded domain; our data imply that as much as 18 kd may be internal to the lipid bilayer. On the other hand, part of the cytoplasmic pole of AChR-delta can be recovered as a discrete, 12-kd fragment upon mild trypsinization of intact vesicles. We have used this 12-kd fragment to identify anti-AChR-delta monoclonal antibodies (mAbs) that react with the cytoplasmic domain of this subunit. Partial proteolytic fragmentation of the AChR in vitro translation products, in topologically well defined rough microsomes, may be used as a general assay to characterize the domain specificity of anti-AChR mAbs. For example, in the case of AChR-beta, we were able to identify two mAbs that recognize extracellular and cytoplasmic fragments, respectively.
机译:使用有限的蛋白水解和域特异性免疫沉淀技术研究了乙酰胆碱受体(AChR)三角洲亚单位的跨膜拓扑结构,该结构在体外合成并共翻译整合到犬胰腺粗糙的微粒体膜中。 65 kdδ亚基中的44千道尔顿(kd)包含单个片段,无法通过胰蛋白酶,胰凝乳蛋白酶,嗜热菌蛋白酶和链霉蛋白酶从膜的细胞质表面进行彻底的蛋白水解消化。以前,我们已经证明此44 kd“受保护”片段包含完整分子的氨基末端和所有核心寡糖(Anderson,DJ,P.Walter和G.Blobel(1982)J. Cell Biol。93 :501–506)。在这里,我们证明了当低浓度的脱氧胆酸盐使膜对胰蛋白酶具有渗透性时,该结构域可与低分子量物质一起进一步分解为26 kd片段(Kreibich,G.,P. Debey和DD Sabatini (1973)J. Cell Biol。58:436-462)。该26-kd片段包含完整亚基上存在的所有核心寡糖,因此构成至少一部分(如果不是全部的话)细胞外结构域。其余的低分子量物质可能来自膜嵌入结构域。我们的数据暗示脂质双层内部可能有多达18 kd。另一方面,轻度胰蛋白酶消化完整囊泡后,AChR-delta的部分胞质极可回收为离散的12 kd片段。我们已使用此12 kd片段来识别与该亚基的胞质域反应的抗AChR-δ单克隆抗体(mAb)。 AChR体外翻译产物的部分蛋白水解片段化,在拓扑明确定义的粗糙微粒体中,可以用作表征抗AChR mAbs结构域特异性的一般检测方法。例如,在AChR-beta的情况下,我们能够鉴定出分别识别细胞外和细胞质片段的两个mAb。

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