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Protocadherin of the liver, kidney and colon associates with detergent-resistant membranes during cellular differentiation

机译:肝,肾和结肠的原钙粘蛋白在细胞分化过程中与耐去污剂的膜结合

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摘要

Protocadherin LKC (PLKC) is a member of the heterogeneous subgroup of protocadherins that was identified and described as a potential tumor-suppressor gene involved in contact inhibition (Okazaki, N., Takahashi, N., Kojima, S., Masuho, Y., and Koga, H. (2002) Carcinogenesis 23, 1139–1148 and Ose, R., Yanagawa, T., Ikeda, S., Ohara, O., and Koga, H. (2009) Mol. Oncol. 3, 54–66). Several aspects of the structure, posttranslational processing, targeting, and function of this new protocadherin are still not known. Here, we demonstrate that the expression of PLKC at the apical membrane domain and its concentration at regions of cell-cell contacts occur concomitantly with significant elevation of PLKC-mRNA levels. Furthermore, it can be found within the adherens junctions, but it does not colocalize with tight junctions proteins ZO-1 and occludin, respectively. Additionally, unlike E-cadherin, PLKC is not redistributed upon Ca2+ removal. Biosynthetic labeling revealed N- and O-glycosylation as posttranslational modifications as well as a fast transport to the cell surface and a low turnover rate. During differentiation, PLKC associates with detergent-resistant membranes that trigger its redistribution from intracellular membranes to the cell surface. This association occurs concomitant with alterations in the glycosylation pattern. We propose a role for PLKC in the establishment of a proper epithelial cell polarity that requires O-linked glycosylation and association of the protein with detergent-resistant membranes.
机译:原钙粘蛋白LKC(PLKC)是原钙粘蛋白异质亚组的成员,已被鉴定为与接触抑制有关的潜在肿瘤抑制基因(冈崎N.高桥N.Kojima S.Masuho Y. (2002)致癌作用23,1139-1148和Ose,R.,Yanagawa,T.,池田,S.,Ohara,O.和Koga,H.(2009)Mol。Oncol。3, 54-66)。这种新的原钙粘着蛋白的结构,翻译后加工,靶向和功能的几个方面仍然未知。在这里,我们证明了PLKC在顶膜结构域的表达及其在细胞-细胞接触区域的浓度与PLKC-mRNA水平的显着升高同时发生。此外,它可以在粘附连接处发现,但不会分别与紧密连接蛋白ZO-1和occludin共定位。此外,与E-钙粘着蛋白不同,去除Ca2 +后PLKC不会重新分布。生物合成标记显示N-和O-糖基化为翻译后修饰,并且可以快速转运到细胞表面,并且转换率低。在分化过程中,PLKC与耐去污剂的膜结合,从而触发其从细胞内膜到细胞表面的重新分布。这种结合伴随糖基化模式的改变而发生。我们提出PLKC在适当的上皮细胞极性的建立中的作用,该极性需要O-连接的糖基化以及蛋白质与去污剂抗性膜的缔合。

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