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Connexin structure, interaction with kinesin and Schwann cell communication.

机译:连接蛋白结构,与驱动蛋白的相互作用和雪旺细胞的通讯。

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摘要

X-linked Charcot-Marie-Tooth (CMTX) disease is characterized by peripheral nerve demyelination, due to expression of aberrant forms of the gap junction protein connexin32 (Cx32) in Schwann cells. Loss of Cx32 function causes demyelination, even in the continued presence of intercellular communication resulting from expression of other connexins. Our central hypothesis is that demyelination is due to the loss of connexin-protein interactions, involving protein misfolding, mislocalization or altering expression of interacting proteins.; We have explored the underlying structural propensity of three connexin proteins by quantifying helical secondary structure content using circular dichroism spectroscopy of synthetic peptides corresponding to cytoplasmic domains of Cx32, Cx36 and Cx43, in aqueous buffers and 30% trifluoroethanol (TFE). We conclude that several peptides in 30% TFE demonstrate helical features, representing common regions in all three connexins. Some CMTX mutations fall within these structured regions, suggesting that mutation-induced structural alterations could have functional consequences.; We next studied the interaction of Cx32 with kinesin, a cytoskeletal motor. Our hypothesis is that part of connexin delivery to the plasma membrane is mediated by interaction with microtubule-motors. Biochemical characterization of Cx32 from liver tissue showed direct kinesin-Cx32 interaction in a region with helical structure and where some CMTX mutations show decreased Cx32 trafficking. Cx32-vesicle motility experiments confirmed kinesin's role.; In order to determine the effects of Cx32 protein loss, we studied Schwann cells from wild-type and connexin-null mice. We found that Cx32-null Schwann cells still maintained a high degree of communication. However, calcium wave propagation upon mechanical stimulation was markedly reduced. We also found changes in cell response to ATP-analogues and ATP-receptor antagonists, suggesting switch of ATP receptor subtypes. Since ATP is known to play a role in nerve-Schwann cell communication, it is possible that Cx32 is necessary for maintenance of myelin.; We have found similar secondary structural features in three connexins. One structured region binds a trafficking motor. Loss of connexin function may affect expression of other proteins in the nexus complex, thereby affecting cell physiology. In studying these three elements of protein function, folding, trafficking and interactions, we hope to have added to the understanding of connexin function.
机译:X连锁Charcot-Marie-Tooth(CMTX)疾病的特征是周围神经脱髓鞘,这是由于Schwann细胞中间隙连接蛋白connexin32(Cx32)的异常表达所致。 Cx32功能的丧失会导致脱髓鞘,即使在其他连接蛋白表达导致的细胞间通讯持续存在的情况下也是如此。我们的中心假设是脱髓鞘是由于连接蛋白-蛋白质相互作用的丧失,涉及蛋白质错误折叠,错误定位或改变相互作用蛋白质的表达。我们已经通过使用圆形二色光谱定量合成的肽对应于Cx32,Cx36和Cx43的胞质结构域,在水性缓冲液和30%三氟乙醇(TFE)中,通过定量螺旋二级结构含量,探索了三种连接蛋白的潜在结构倾向。我们得出的结论是,含有30%TFE的几种肽表现出螺旋特征,代表所有三种连接蛋白的共同区域。某些CMTX突变落在这些结构化区域内,表明突变诱导的结构改变可能具有功能后果。接下来,我们研究了Cx32与驱动蛋白(一种细胞骨架马达)的相互作用。我们的假设是连接蛋白传递到质膜的一部分是通过与微管马达的相互作用来介导的。来自肝脏组织的Cx32的生化特征显示,在具有螺旋结构的区域中直接驱动蛋白-Cx32相互作用,并且其中某些CMTX突变显示Cx32的运输减少。 Cx32囊泡运动实验证实了驱动蛋白的作用。为了确定Cx32蛋白丢失的影响,我们研究了野生型和连接蛋白无效小鼠的Schwann细胞。我们发现,无Cx32的Schwann细胞仍保持高度的通讯。但是,机械刺激下的钙波传播明显减少。我们还发现细胞对ATP类似物和ATP受体拮抗剂的反应发生了变化,这提示了ATP受体亚型的转变。因为已知ATP在神经-施万细胞通讯中起作用,所以Cx32可能是维持髓磷脂所必需的。我们在三种连接蛋白中发现了相似的二级结构特征。一个结构化区域束缚了人口贩运运动。连接蛋白功能的丧失可能影响其他蛋白质在神经复合体中的表达,从而影响细胞生理。在研究蛋白质功能,折叠,运输和相互作用的这三个要素时,我们希望能增加对连接蛋白功能的了解。

著录项

  • 作者

    Fort, Alfredo Gustavo.;

  • 作者单位

    Yeshiva University.;

  • 授予单位 Yeshiva University.;
  • 学科 Biology Molecular.; Biology Neuroscience.; Biology Cell.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 207 p.
  • 总页数 207
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子遗传学;神经科学;细胞生物学;
  • 关键词

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