Neuron-Subtype-Specific Expression, Interaction Affinities, and Specificity Determinants of DIP/Dpr Cell Recognition Proteins

DIP/Dpr 细胞识别蛋白的神经元亚型特异性表达、相互作用亲和力和特异性决定因素

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作者:Filip Cosmanescu, Phinikoula S Katsamba, Alina P Sergeeva, Goran Ahlsen, Saurabh D Patel, Joshua J Brewer, Liming Tan, Shuwa Xu, Qi Xiao, Sonal Nagarkar-Jaiswal, Aljoscha Nern, Hugo J Bellen, S Lawrence Zipursky, Barry Honig, Lawrence Shapiro0

Abstract

Binding between DIP and Dpr neuronal recognition proteins has been proposed to regulate synaptic connections between lamina and medulla neurons in the Drosophila visual system. Each lamina neuron was previously shown to express many Dprs. Here, we demonstrate, by contrast, that their synaptic partners typically express one or two DIPs, with binding specificities matched to the lamina neuron-expressed Dprs. A deeper understanding of the molecular logic of DIP/Dpr interaction requires quantitative studies on the properties of these proteins. We thus generated a quantitative affinity-based DIP/Dpr interactome for all DIP/Dpr protein family members. This revealed a broad range of affinities and identified homophilic binding for some DIPs and some Dprs. These data, along with full-length ectodomain DIP/Dpr and DIP/DIP crystal structures, led to the identification of molecular determinants of DIP/Dpr specificity. This structural knowledge, along with a comprehensive set of quantitative binding affinities, provides new tools for functional studies in vivo.

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