Distinct autoregulatory roles of ELFN1 intracellular and extracellular domains on membrane trafficking, synaptic localization, and dimerization.

IF 4 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Biological Chemistry Pub Date : 2024-12-13 DOI:10.1016/j.jbc.2024.108073
Henry A Dunn, Simran K Dhaliwal, Chu-Ting Chang, Kirill A Martemyanov
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Abstract

Synaptic adhesion molecules are essential components of the synapse, yet the diversity of these molecules and their associated functions remain to be fully characterized. Extracellular leucine rich repeat and fibronectin type III domain containing 1 (ELFN1) is a postsynaptic adhesion molecule in the brain that has been increasingly implicated in human neurological disease. ELFN1 is best known for trans-synaptically modulating group III metabotropic glutamate receptors (mGluRs). However, little is known about ELFN1 organization and regulation, which likely govern and precede its ultimate trans-synaptic engagement with group III mGluRs. Herein, we report that the intracellular ELFN1 domain controls membrane trafficking and post-synaptic localization of ELFN1. We pinpoint a ∼30 amino acid juxtamembranous region required for membrane-targeting and discover that ELFN1 exists as an obligate homodimer prior to its trafficking to the membrane. We determine that ELFN1 homodimerization is not appreciably affected by the intracellular region and instead utilizes the extracellular leucine rich repeats (LRR) domain. We find that a single membrane-targeting motif located in one protomer is sufficient for effective trafficking of the ELFN1 homodimer. We further demonstrate that the closest ELFN1 homolog, synaptic adhesion molecule ELFN2, exhibits similar properties and participates in heterodimerization with ELFN1. This establishes distinct autoregulatory roles of ELFN1 intracellular and extracellular domains on membrane trafficking, post-synaptic localization, and dimerization while indicating conservation of the mechanisms across the ELFN subfamily of cell adhesion molecules.

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突触粘附分子是突触的重要组成部分,但这些分子的多样性及其相关功能仍有待全面鉴定。富含胞外亮氨酸重复和纤连蛋白 III 型结构域的 1(ELFN1)是大脑突触后粘附分子,越来越多地与人类神经系统疾病有关。ELFN1 以跨突触调节 III 组代谢谷氨酸受体(mGluRs)而闻名。然而,人们对 ELFN1 的组织和调控知之甚少,而 ELFN1 的最终跨突触参与 III 组 mGluRs 的调控很可能是在此之前进行的。在此,我们报告了细胞内 ELFN1 结构域控制着 ELFN1 的膜贩运和突触后定位。我们确定了膜靶向所需的~30 个氨基酸的并膜区域,并发现 ELFN1 在转运到膜之前是以强制性同源二聚体的形式存在的。我们确定,ELFN1 的同源二聚体化不受细胞内区域的明显影响,而是利用了细胞外的富亮氨酸重复序列(LRR)结构域。我们发现,位于一个原体中的单个膜靶向基序足以使 ELFN1 同源二聚体有效地迁移。我们进一步证明,最接近 ELFN1 的同源物--突触粘附分子 ELFN2 表现出类似的特性,并参与 ELFN1 的异源二聚化。这确定了 ELFN1 细胞内和细胞外结构域对膜贩运、突触后定位和二聚化的不同自动调节作用,同时表明 ELFN 亚家族细胞粘附分子的机制是一致的。
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Journal of Biological Chemistry
Journal of Biological Chemistry Biochemistry, Genetics and Molecular Biology-Biochemistry
自引率
4.20%
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1233
期刊介绍: The Journal of Biological Chemistry welcomes high-quality science that seeks to elucidate the molecular and cellular basis of biological processes. Papers published in JBC can therefore fall under the umbrellas of not only biological chemistry, chemical biology, or biochemistry, but also allied disciplines such as biophysics, systems biology, RNA biology, immunology, microbiology, neurobiology, epigenetics, computational biology, ’omics, and many more. The outcome of our focus on papers that contribute novel and important mechanistic insights, rather than on a particular topic area, is that JBC is truly a melting pot for scientists across disciplines. In addition, JBC welcomes papers that describe methods that will help scientists push their biochemical inquiries forward and resources that will be of use to the research community.
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