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质膜棕榈酰化蛋白调节黏附分子的运输和加工。

Membrane palmitoylated proteins regulate trafficking and processing of nectins.

机构信息

Department of Neuroscience, Georgetown University Medical Center, 3970 Reservoir Rd. NW, Washington, DC 20057, USA.

出版信息

Eur J Cell Biol. 2011 May;90(5):365-75. doi: 10.1016/j.ejcb.2011.01.004. Epub 2011 Mar 2.

Abstract

Nectins are cell-cell adhesion molecules involved in the formation of various intercellular junctions and the establishment of apical-basal polarity at cell-cell adhesion sites. To have a better understanding of the roles of nectins in the formation of cell-cell junctions, we searched for new cytoplasmic binding partners for nectin. We report that nectin-1α associates with membrane palmitoylated protein 3 (MPP3), one of the human homologues of a Drosophila tumor suppressor gene, Disc large. Two major forms of MPP3 at 66 and 98 kDa were detected, in conjunction with nectin-1α, suggesting that an association between the two may occur in various cell types. Nectin-1α recruits MPP3 to cell-cell contact sites, mediated by a PDZ-binding motif at the carboxyl terminus of nectin-1α. Association with MPP3 increases cell surface expression of nectin-1α and enhances nectin-1α ectodomain shedding, indicating that MPP3 regulates trafficking and processing of nectin-1α. Further study showed that MPP3 interacts with nectin-3α, but not with nectin-2α, showing that the association of nectins with MPP3 is isoform-specific. MPP5, another MPP family member, interacts with nectins with varying affinity and facilitates surface expression of nectin-1α, nectin-2α, and nectin-3α. These data suggest that wide interactions between nectins and MPP family members may occur in various cell-cell junctions and that these associations may regulate trafficking and processing of nectins.

摘要

黏附连接分子 nectin 参与多种细胞间连接的形成和细胞连接部位顶端-基底极性的建立。为了更好地理解 nectin 在细胞连接形成中的作用,我们寻找 nectin 的新的细胞质结合伙伴。我们报告 nectin-1α 与膜棕榈酰化蛋白 3(MPP3)结合,MPP3 是果蝇肿瘤抑制基因 Disc large 的人类同源物之一。检测到与 nectin-1α 结合的两种主要形式的 MPP3,分子量分别为 66 kDa 和 98 kDa,提示两种蛋白可能在多种细胞类型中存在相互作用。Nectin-1α 通过其羧基末端的 PDZ 结合基序将 MPP3 募集到细胞-细胞接触部位。与 MPP3 的结合增加了 nectin-1α 的细胞表面表达,并增强了 nectin-1α 的胞外结构域脱落,表明 MPP3 调节 nectin-1α 的运输和加工。进一步的研究表明,MPP3 与 nectin-3α 相互作用,但不与 nectin-2α 相互作用,表明 nectin 与 MPP3 的结合具有异构体特异性。另一个 MPP 家族成员 MPP5 以不同的亲和力与 nectin 相互作用,并促进 nectin-1α、nectin-2α 和 nectin-3α 的表面表达。这些数据表明,nectin 与 MPP 家族成员之间可能存在广泛的相互作用,这些相互作用可能调节 nectin 的运输和加工。

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