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CHRFAM7A改变与神经元α-7烟碱型乙酰胆碱受体的结合。

CHRFAM7A alters binding to the neuronal alpha-7 nicotinic acetylcholine receptor.

作者信息

Chan Theresa, Williams Elliot, Cohen Olga, Eliceiri Brian P, Baird Andrew, Costantini Todd W

机构信息

Division of Trauma, Surgical Critical Care, Burns and Acute Care Surgery, Department of Surgery, University of California San Diego Health, 200 W. Arbor Drive #8896, San Diego, CA, 92103, USA.

出版信息

Neurosci Lett. 2019 Jan 18;690:126-131. doi: 10.1016/j.neulet.2018.10.010. Epub 2018 Oct 9.

Abstract

INTRODUCTION

CHRFAM7A is a uniquely-human gene that encodes a human-specific variant of the alpha-7 nicotinic acetylcholine receptor (α7nAchR). While the homopentameric α7nAChR consists of 5 equal subunits, previous studies demonstrated that CHRFAM7A expression disrupts the formation of α7nAChR homopentamers. Here we use a rat neuronal cell line expressing CHRFAM7A and a transgenic mouse expressing CHRFAM7A to define the alpha-bungarotoxin (α-BTX) binding in vitro and in vivo.

METHODS

Rat PC12 cells were stably transfected with human CHRFAM7A. α-BTX, a protein that irreversibly binds the α7nAchR, was utilized to assess the capacity for CHRFAM7A to interfere with α 7AchR subunits using immunohistochemistry and flow cytometry. To evaluate the effects of CHRFAM7A on α7nAchR at the neuromuscular junction in vivo, transgenic mice were engineered to express the uniquely human gene CHRFAM7A under the control of the EF1-α promoter. Using this model, muscle was harvested and CHRFAM7A and CHRNA7 gene expression evaluated by PCR. Binding of α-BTX to the α7nAchR in muscle was compared in sibling-matched wild-type C57 mice by immunostaining the neuromuscular junction using α-BTX and neurofilament antibodies.

RESULTS

Expression of CHRFAM7A in transfected, but not vector cells, was confirmed by PCR and by immunoblotting using an antibody we raised to a peptide sequence unique to CHRFAM7A. CHRFAM7A decreased α-BTX binding as detected by immunohistochemistry and flow cytometry. In vivo, α-BTX co-stained with neurofilament at the neuromuscular junction in wild-type mice, however, α-BTX staining was decreased at the neuromuscular junction of CHRFAM7A transgenic mice.

CONCLUSION

CHRFAM7A expression interferes with the binding of α7nAchR to α-BTX. Understanding the contribution of this uniquely human gene to human disease will be important in the identification of potential therapeutic targets.

摘要

引言

CHRFAM7A是一种独特的人类基因,编码α7烟碱型乙酰胆碱受体(α7nAchR)的人类特异性变体。虽然同五聚体α7nAChR由5个相同的亚基组成,但先前的研究表明,CHRFAM7A的表达会破坏α7nAChR同五聚体的形成。在这里,我们使用表达CHRFAM7A的大鼠神经元细胞系和表达CHRFAM7A的转基因小鼠来确定α-银环蛇毒素(α-BTX)在体外和体内的结合情况。

方法

将人CHRFAM7A稳定转染大鼠PC12细胞。α-BTX是一种与α7nAchR不可逆结合的蛋白质,利用免疫组织化学和流式细胞术评估CHRFAM7A干扰α7AchR亚基的能力。为了评估CHRFAM7A在体内神经肌肉接头处对α7nAchR的影响,构建了转基因小鼠,使其在EF1-α启动子的控制下表达独特的人类基因CHRFAM7A。使用该模型,收获肌肉并通过PCR评估CHRFAM7A和CHRNA7基因表达。通过使用α-BTX和神经丝抗体对神经肌肉接头进行免疫染色,比较了同胞匹配的野生型C57小鼠肌肉中α-BTX与α7nAchR的结合情况。

结果

通过PCR以及使用我们针对CHRFAM7A独特肽序列产生的抗体进行免疫印迹,证实了CHRFAM7A在转染细胞而非载体细胞中的表达。免疫组织化学和流式细胞术检测显示,CHRFAM7A降低了α-BTX结合。在体内,野生型小鼠神经肌肉接头处α-BTX与神经丝共染色,然而,CHRFAM7A转基因小鼠神经肌肉接头处的α-BTX染色减少。

结论

CHRFAM7A的表达干扰了α7nAchR与α-BTX的结合。了解这种独特的人类基因对人类疾病的贡献对于确定潜在的治疗靶点将具有重要意义。

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