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侧向迁移在碱性多肽包被的乳胶珠诱导的乙酰胆碱受体簇形成中的作用。

The role of lateral migration in the formation of acetylcholine receptor clusters induced by basic polypeptide-coated latex beads.

作者信息

Peng H B, Zhao D Y, Xie M Z, Shen Z W, Jacobson K

机构信息

Department of Cell Biology and Anatomy, University of North Carolina, Chapel Hill 27599.

出版信息

Dev Biol. 1989 Jan;131(1):197-206. doi: 10.1016/s0012-1606(89)80051-x.

Abstract

During the formation of the neuromuscular junction, the nerve induces the clustering of acetylcholine receptors (AChR) in the postsynaptic membrane. This process can be mimicked by treating cultured Xenopus myotomal muscle cells with basic polypeptide-coated latex beads. Using this bead-muscle coculture system, we examined the role of lateral migration of AChRs in the formation of the clusters. First, we studied the contributions of the preexisting and newly inserted AChRs. After the cluster formation was triggered by the addition of the beads, preexisting receptors were immediately recruited to the bead-muscle contacts and they remained to be the dominant contributor during the first 24 hr. New AChRs, which were inserted after the addition of the beads, appeared at the clusters after a 4-hr delay and, thereafter, there was a steady increase in their contribution. After 24-48 hr, newly inserted AChRs could be detected at the bead-induced clusters to the same extent as the preexisting AChRs. During this period, new receptors were continuously inserted into the plasma membrane, but there was no evidence of a local insertion at sites of new cluster formation. Concanavalin A (Con A) at a concentration of 100 micrograms/ml caused a fivefold decrease in the fraction of mobile AChRs and a large decrease in their diffusion coefficient. Pretreatment of cells with Con A suppressed clustering of preexisting AChRs, but left intact the contribution of the mobile newly inserted AChRs. Succinyl Con A, the divalent derivative of Con A which affected the mobility to a much less extent than Con A, had little effect on the clustering process. These results show that the formation of AChR clusters in Xenopus is mediated by lateral migration of AChRs within the plasma membrane and are consistent with the diffusion-trap hypothesis, which depicts freely diffusing AChR aggregating at the bead-muscle contacts where they bind to other localized molecular specializations induced by the beads.

摘要

在神经肌肉接头形成过程中,神经诱导突触后膜上乙酰胆碱受体(AChR)聚集。用碱性多肽包被的乳胶珠处理培养的非洲爪蟾肌节肌细胞可模拟这一过程。利用这种珠 - 肌肉共培养系统,我们研究了AChR横向迁移在簇形成中的作用。首先,我们研究了预先存在的和新插入的AChR的作用。添加珠子触发簇形成后,预先存在的受体立即被募集到珠 - 肌肉接触部位,并且在最初的24小时内它们仍然是主要的贡献者。添加珠子后插入的新AChR在延迟4小时后出现在簇中,此后,它们的贡献稳步增加。24 - 48小时后,在珠子诱导的簇中可以检测到新插入的AChR,其程度与预先存在的AChR相同。在此期间,新受体不断插入质膜,但没有证据表明在新簇形成部位有局部插入。浓度为100微克/毫升的伴刀豆球蛋白A(Con A)使可移动AChR的比例降低了五倍,其扩散系数大幅下降。用Con A预处理细胞可抑制预先存在的AChR的聚集,但新插入的可移动AChR的贡献不受影响。琥珀酰Con A是Con A的二价衍生物,其对流动性的影响远小于Con A,对聚集过程几乎没有影响。这些结果表明,非洲爪蟾中AChR簇的形成是由质膜内AChR的横向迁移介导的,这与扩散陷阱假说一致,该假说描述了自由扩散的AChR在珠 - 肌肉接触部位聚集,在那里它们与珠子诱导的其他局部分子特化结合。

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