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Integrin-linked kinase and ELMO2 modulate recycling endosomes in keratinocytes

机译:整合素连接的激酶和ELMO2调节角质形成细胞中的再循环内体。

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The formation of tight cell-cell junctions is essential in the epidermis for its barrier properties. In this tissue, keratinocytes follow a differentiation program tightly associated with their movement from the innermost basal to the outer suprabasal layers, and with changes in their cell-cell adhesion profile. Intercellular adhesion in keratinocytes is mediated through cell-cell contacts, including E-cadherin-based adherens junctions. Although the mechanisms that mediate E-cadherin delivery to the plasma membrane have been widely studied in simple epithelia, this process is less well understood in the stratified epidermis. In this study, we have investigated the role of Engulfment and Cell Motility 2 (ELMO2) and integrin-linked kinase (ILK) in the positioning of E-cadherin-containing recycling endosomes during establishment of cell-cell contacts in differentiating keratinocytes. We now show that induction of keratinocyte differentiation by Ca2+ is accompanied by localization of ELMO2 and ILK to Rab4- and Rab1 1a-containing recycling endosomes. The positioning of long-loop Rab11a-positive endosomes at areas adjacent to cell-cell contacts is disrupted in ELMO2- or ILK-deficient keratinocytes, and is associated with impaired localization of E-cadherin to cell borders. Our studies show a previously unrecognized role for ELMO2 and ILK in modulation of endosomal positioning, which may play key roles in epidermal sheet maintenance and permeability barrier function. (C) 2016 Elsevier B.V. All rights reserved.
机译:紧密的细胞间连接的形成对于表皮的屏障特性至关重要。在这种组织中,角质形成细胞遵循分化程序,该程序与它们从最内层基底到上基底外层的运动紧密相关,并且与它们的细胞间粘附特性密切相关。角质形成细胞中的细胞间粘附是通过细胞-细胞接触介导的,包括基于E-钙粘蛋白的粘附连接。尽管在简单的上皮细胞中已广泛研究了介导E-钙粘蛋白递送至质膜的机制,但在分层表皮中对该过程的了解较少。在这项研究中,我们研究了吞噬和细胞运动2(ELMO2)和整联蛋白连接的激酶(ILK)在分化角质形成细胞建立细胞-细胞接触过程中在含E-钙粘蛋白的回收内体定位中的作用。我们现在显示,由Ca2 +诱导的角质形成细胞分化伴随着ELMO2和ILK到Rab4和Rab1 1a含回收内体的定位。长环Rab11a阳性内体在邻近细胞与细胞接触的区域的定位在ELMO2或ILK缺陷型角质形成细胞中被破坏,并且与E-钙粘蛋白在细胞边界的定位受损有关。我们的研究表明,ELMO2和ILK在调节内体定位方面可能是前所未有的作用,这可能在表皮片的维持和通透性屏障功能中起关键作用。 (C)2016 Elsevier B.V.保留所有权利。

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