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乙酰胆碱受体假定两亲性螺旋位于膜外的证据。

Evidence for the extramembranous location of the putative amphipathic helix of acetylcholine receptor.

作者信息

Dwyer B P

机构信息

Department of Chemistry, University of California, San Diego, La Jolla 92093.

出版信息

Biochemistry. 1988 Jul 26;27(15):5586-92. doi: 10.1021/bi00415a029.

Abstract

Evidence has been obtained demonstrating that the peptides GVKYIAE and AIKYIAE found in the potential amphipathic helices of the alpha and beta subunits, respectively, of acetylcholine receptor are not buried in the membrane. The peptide KYIAE was synthesized, and polyclonal antibodies were prepared against a conjugate of bovine serum albumin and synthetic peptide. An immunoadsorbent capable of binding and subsequently releasing peptides ending with the sequence-YIAE was produced by attaching these specific antibodies to agarose. Native acetylcholine receptor was labeled with pyridoxal phosphate and Na[3H]BH4. The labeled protein was stripped of phospholipid and digested with the protease from Staphylococcus aureus strain V8. The digest was submitted to immunoadsorption to isolate the labeled indigenous peptides. As a control, alpha and beta polypeptides prepared by gel filtration of a solution of acetylcholine receptor in detergent were stripped of detergent and labeled with pyridoxal phosphate and Na[3H]BH4 in the presence of 8 M urea. The labeled alpha and beta polypeptides were digested and submitted to immunoadsorption. The specific radioactivities of the indigenous peptides from the alpha and beta subunits labeled under native and denaturing conditions were nearly equal. In similar experiments using isethionyl (2', 4'-dinitrophenyl)-3-amino-propionimidate as the labeling agent, the indigenous peptides from native and denatured receptor were also labeled to the same extent. Since these peptides are labeled to the same extent whether or not the protein is denatured, they cannot be buried in the membrane.

摘要

已获得证据表明,分别在乙酰胆碱受体α和β亚基的潜在两亲性螺旋中发现的肽GVKYIAE和AIKYIAE并未埋入膜中。合成了肽KYIAE,并制备了针对牛血清白蛋白与合成肽缀合物的多克隆抗体。通过将这些特异性抗体连接到琼脂糖上,制备了一种能够结合并随后释放以序列-YIAE结尾的肽的免疫吸附剂。天然乙酰胆碱受体用磷酸吡哆醛和Na[3H]BH4进行标记。将标记的蛋白质去除磷脂,并用金黄色葡萄球菌V8菌株的蛋白酶进行消化。将消化产物进行免疫吸附以分离标记的天然肽。作为对照,通过在去污剂中对乙酰胆碱受体溶液进行凝胶过滤制备的α和β多肽去除去污剂,并在8 M尿素存在下用磷酸吡哆醛和Na[3H]BH4进行标记。对标记的α和β多肽进行消化并进行免疫吸附。在天然和变性条件下标记的α和β亚基的天然肽的比放射性几乎相等。在使用羟乙磺酰基(2',4'-二硝基苯基)-3-氨基丙亚氨酸酯作为标记剂的类似实验中,天然和变性受体的天然肽也被标记到相同程度。由于无论蛋白质是否变性,这些肽都被标记到相同程度,因此它们不可能埋入膜中。

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