Goodman Kerry Marie, Rubinstein Rotem, Thu Chan Aye, Bahna Fabiana, Mannepalli Seetha, Ahlsén Göran, Rittenhouse Chelsea, Maniatis Tom, Honig Barry, Shapiro Lawrence
Department of Biochemistry and Molecular Biophysics, Columbia University, New York, NY 10032, USA.
Department of Biochemistry and Molecular Biophysics, Columbia University, New York, NY 10032, USA; Department of Systems Biology, Columbia University, New York, NY 10032, USA.
Neuron. 2016 May 18;90(4):709-23. doi: 10.1016/j.neuron.2016.04.004. Epub 2016 May 5.
Clustered protocadherin proteins (α-, β-, and γ-Pcdhs) provide a high level of cell-surface diversity to individual vertebrate neurons, engaging in highly specific homophilic interactions to mediate important roles in mammalian neural circuit development. How Pcdhs bind homophilically through their extracellular cadherin (EC) domains among dozens of highly similar isoforms has not been determined. Here, we report crystal structures for extracellular regions from four mouse Pcdh isoforms (α4, α7, β6, and β8), revealing a canonical head-to-tail interaction mode for homophilic trans dimers comprising primary intermolecular EC1:EC4 and EC2:EC3 interactions. A subset of trans interface residues exhibit isoform-specific conservation, suggesting roles in recognition specificity. Mutation of these residues, along with trans-interacting partner residues, altered the specificities of Pcdh interactions. Together, these data show how sequence variation among Pcdh isoforms encodes their diverse strict homophilic recognition specificities, which are required for their key roles in neural circuit assembly.
成簇的原钙黏蛋白(α-、β-和γ-原钙黏蛋白)为单个脊椎动物神经元提供了高水平的细胞表面多样性,通过高度特异性的嗜同性相互作用在哺乳动物神经回路发育中发挥重要作用。原钙黏蛋白如何在数十种高度相似的亚型中通过其细胞外钙黏蛋白(EC)结构域进行嗜同性结合尚未确定。在此,我们报道了四种小鼠原钙黏蛋白亚型(α4、α7、β6和β8)细胞外区域的晶体结构,揭示了嗜同性反式二聚体的典型头对头相互作用模式,包括主要的分子间EC1:EC4和EC2:EC3相互作用。反式界面残基的一个子集表现出亚型特异性保守性,表明其在识别特异性中发挥作用。这些残基以及反式相互作用伙伴残基的突变改变了原钙黏蛋白相互作用的特异性。这些数据共同表明,原钙黏蛋白亚型之间的序列变异如何编码其多样且严格的嗜同性识别特异性,而这是它们在神经回路组装中的关键作用所必需的。