4.4 Article

Gene selection, alternative splicing, and post-translational processing regulate neuroligin selectivity for β-neurexins

期刊

BIOCHEMISTRY
卷 45, 期 42, 页码 12816-12827

出版社

AMER CHEMICAL SOC
DOI: 10.1021/bi0614131

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资金

  1. NIEHS NIH HHS [P42-ES-10337] Funding Source: Medline
  2. NIGMS NIH HHS [R37 GM-18360] Funding Source: Medline
  3. NIMH NIH HHS [R37 MH52804-08] Funding Source: Medline

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Neuroligins 1-4 are postsynaptic transmembrane proteins capable of initiating presynaptic maturation via interactions with beta-neurexin. Both neuroligins and beta-neurexins have alternatively spliced inserts in their extracellular domains. Using analytical ultracentrifugation, we determined that the extracellular domains of the neuroligins sediment as dimers, whereas the extracellular domains of the beta-neurexins appear monomeric. Sedimentation velocity experiments of titrated stoichiometry ratios of beta-neurexin and neuroligin suggested a 2: 2 complex formation. The recognition properties of individual neuroligins toward beta-neurexin-1 (NX1 beta), along with the influence of their splice inserts, were explored by surface plasmon resonance and affinity chromatography. Different neuroligins display a range of NX1 beta affinities spanning more than 2 orders of magnitude. Whereas splice insert 4 in beta-neurexin appears to act only as a modulator of the neuroligin/beta-neurexin association, splice insert B in neuroligin-1 (NL1) is the key element regulating the NL1/NX1, binding. Our data indicate that gene selection, mRNA splicing, and post-translational modifications combine to give rise to a controlled neuroligin recognition code with a rank ordering of affinities for particular neurexins that is conserved for the neuroligins across mammalian species.

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