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Allelic variants of acetylcholinesterase: genetic evidence that all acetylcholinesterase forms in avian nerves and muscles are encoded by a single gene.

机译:乙酰胆碱酯酶的等位基因变体:遗传证据表明禽类神经和肌肉中所有乙酰胆碱酯酶形式均由单个基因编码。

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摘要

Two acetylcholinesterase (AcChoEase) polypeptide chains, alpha and beta, are expressed in avian nerves and muscles with apparent molecular masses of 110 and 100 kDa, respectively. We now show that individual quails express alpha, beta, or both AcChoEase polypeptide chains. By mating studies we show that the two AcChoEase polypeptides are autosomal and segregate as codominant alleles in classical Mendelian fashion. Biochemical studies of the two allelic AcChoEase polypeptides indicate that they have the same turnover number, have the same Km for acetylcholine, are immunoprecipitated to the same extent with a monoclonal anti-AcChoEase antibody, and can assemble with equal efficiency into multimeric forms. Thus there are no obvious functional differences between the two alleles. In heterozygotes, the rates of synthesis of the two polypeptides are identical, suggesting that there are no differences in expression of these two genes. Within an individual, nerves and muscles always express the same AcChoEase forms isolated from muscle indicates that all AcChoEase forms are comprised of the same allelic polypeptide chains. In contrast to the nicotinic acetylcholine receptors that appear to be encoded by complex multigene families, our studies on AcChoEase show that all forms of this important synaptic component in electrically excitable cells are encoded by a single gene. Thus differences in assembly and localization of the multiple synaptic forms of AcChoEase must arise through posttranscriptional events, posttranslational modifications of a similar AcChoEase polypeptide chain or both.
机译:两条乙酰胆碱酯酶(AcChoEase)多肽链(α和β)在禽神经和肌肉中表达,表观分子量分别为110和100 kDa。我们现在显示单个鹌鹑表达α,β或两个AcChoEase多肽链。通过交配研究,我们表明这两种AcChoEase多肽是常染色体的,以孟德尔经典方式作为共性等位基因分离。对两种等位基因AcChoEase多肽的生化研究表明,它们具有相同的营业额,对于乙酰胆碱具有相同的Km,可以用单克隆抗AcChoEase抗体免疫沉淀到相同程度,并且可以以相等的效率组装成多聚体形式。因此,两个等位基因之间没有明显的功能差异。在杂合子中,两种多肽的合成速率相同,这表明这两种基因的表达没有差异。在一个人内,神经和肌肉总是表达与肌肉分离的相同AcChoEase形式,这表明所有AcChoEase形式都由相同的等位基因多肽链组成。与似乎由复杂的多基因家族编码的烟碱乙酰胆碱受体相反,我们对AcChoEase的研究表明,在电兴奋性细胞中这种重要的突触成分的所有形式均由单个基因编码。因此,必须通过转录后事件,相似的AcChoEase多肽链的翻译后修饰或两者同时产生AcChoEase的多种突触形式在组装和定位上的差异。

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