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原钙黏蛋白γA3可变胞质结构域的泛素化调节细胞间相互作用。

Ubiquitination of the protocadherin-γA3 variable cytoplasmic domain modulates cell-cell interaction.

作者信息

Ptashnik Albert, LaMassa Nicole, Mambetalieva Aliya, Schnall Emily, Bucaro Mike, Phillips Greg R

机构信息

Department of Biology, College of Staten Island, City University of New York, New York, NY, United States.

PhD Program in Biology, Subprogram in Neuroscience, CUNY Graduate Center, New York, NY, United States.

出版信息

Front Cell Dev Biol. 2023 Sep 18;11:1261048. doi: 10.3389/fcell.2023.1261048. eCollection 2023.

Abstract

The family of ∼60 clustered protocadherins (Pcdhs) are cell adhesion molecules encoded by a genomic locus that regulates expression of distinct combinations of isoforms in individual neurons resulting in what is thought to be a neural surface "barcode" which mediates same-cell interactions of dendrites, as well as interactions with other cells in the environment. Pcdh mediated same-cell dendrite interactions were shown to result in avoidance while interactions between different cells through Pcdhs, such as between neurons and astrocytes, appear to be stable. The cell biological mechanism of the consequences of Pcdh based adhesion is not well understood although various signaling pathways have been recently uncovered. A still unidentified cytoplasmic regulatory mechanism might contribute to a "switch" between avoidance and adhesion. We have proposed that endocytosis and intracellular trafficking could be part of such a switch. Here we use "stub" constructs consisting of the proximal cytoplasmic domain (lacking the constant carboxy-terminal domain spliced to all Pcdh-γs) of one Pcdh, Pcdh-γA3, to study trafficking. We found that the stub construct traffics primarily to Rab7 positive endosomes very similarly to the full length molecule and deletion of a substantial portion of the carboxy-terminus of the stub eliminates this trafficking. The intact stub was found to be ubiquitinated while the deletion was not and this ubiquitination was found to be at non-lysine sites. Further deletion mapping of the residues required for ubiquitination identified potential serine phosphorylation sites, conserved among Pcdh-γAs, that can reduce ubiquitination when pseudophosphorylated and increase surface expression. These results suggest Pcdh-γA ubiquitination can influence surface expression which may modulate adhesive activity during neural development.

摘要

大约60种成簇原钙黏蛋白(Pcdhs)家族是由一个基因组位点编码的细胞黏附分子,该位点调节单个神经元中不同亚型组合的表达,从而产生一种被认为是神经表面“条形码”的物质,它介导树突的同细胞相互作用以及与环境中其他细胞的相互作用。Pcdh介导的同细胞树突相互作用会导致回避,而通过Pcdhs进行的不同细胞之间的相互作用,如神经元与星形胶质细胞之间的相互作用,似乎是稳定的。尽管最近发现了各种信号通路,但基于Pcdh的黏附所产生后果的细胞生物学机制仍未得到充分理解。一种尚未确定的细胞质调节机制可能促成了回避和黏附之间的“转换”。我们提出内吞作用和细胞内运输可能是这种转换的一部分。在这里,我们使用由一种Pcdh,即Pcdh-γA3的近端细胞质结构域(缺少与所有Pcdh-γs拼接的恒定羧基末端结构域)组成的“短截”构建体来研究运输。我们发现,该短截构建体主要运输到Rab7阳性的内体,这与全长分子非常相似,并且短截构建体羧基末端的大部分缺失会消除这种运输。完整的短截构建体被发现发生了泛素化,而缺失的构建体则没有,并且这种泛素化发生在非赖氨酸位点。对泛素化所需残基的进一步缺失定位确定了Pcdh-γA之间保守的潜在丝氨酸磷酸化位点,当假磷酸化时可以减少泛素化并增加表面表达。这些结果表明,Pcdh-γA的泛素化可以影响表面表达,这可能在神经发育过程中调节黏附活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4fa2/10544333/7ebf87de8c7a/fcell-11-1261048-g001.jpg

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