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Mutational analysis of the neurexineuroligin complex reveals essential and regulatory components

机译:神经毒素/神经肽复合物的突变分析揭示了必需和调节成分

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Neurexins are cell-surface molecules that bind neuroligins to form a heterophilic, Ca~(2+)dependent complex at central synapses. This transsynaptic complex is required for efficient neurotransmission and is involved in the formation of synaptic contacts. In addition, both molecules have been identified as candidate genes for autism. Here we performed mutagenesis experiments to probe for essential components of the neurexineuroligin binding interface at the single-amino acid level. We found that in neurexins the contact area is sharply delineated and consists of hydrophobic residues of the LNS domain that surround a Ca~(2+) binding pocket. Point mutations that changed electrostatic and shape properties leave Ca~(2+) coordination intact but completely inhibit neuroligin binding, whereas alternative splicing in α- and β-neurexins and in neuroligins has a weaker effect on complex formation. In neuroligins, the contact area appears less distinct because exchange of a more distant aspartate completely abolished binding to neurexin but many mutations of predicted interface residues had no strong effect on binding. Together with calculations of energy terms for presumed interface hot spots that complement and extend our mutagenesis and recent crystal structure data, this study presents a comprehensive structural basis for the complex formation of neurexins and neuroligins and their transsynaptic signaling between neurons.
机译:神经毒素是与神经胶蛋白结合的细胞表面分子,在中央突触处形成嗜异的Ca〜(2+)依赖性复合物。这种跨突触复合物是有效的神经传递所必需的,并参与突触接触的形成。另外,这两种分子已被鉴定为自闭症的候选基因。在这里,我们进行了诱变实验,以探测单氨基酸水平上神经毒素/神经胶蛋白结合界面的基本成分。我们发现,在神经毒素中,接触区域被清晰地描绘,并且由围绕Ca〜(2+)结合口袋的LNS域的疏水残基组成。改变静电和形状特性的点突变使Ca〜(2+)配位保持完整,但完全抑制了神经胶蛋白的结合,而在α-和β-神经毒素以及神经胶蛋白中的可变剪接对复合物的形成作用较弱。在神经胶蛋白中,接触区域显得不太明显,因为更远的天冬氨酸的交换完全消除了与神经毒素的结合,但是预测的界面残基的许多突变对结合没有强烈影响。连同对补充和扩展我们的诱变作用和最新晶体结构数据的假定界面热点的能量项的计算,这项研究为神经毒素和神经胶蛋白的复杂形成及其在神经元之间的突触传递信号提供了全面的结构基础。

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