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小窝蛋白在人角质形成细胞中的表达和定位表明其在板层颗粒生物发生中起作用。

Caveolin expression and localization in human keratinocytes suggest a role in lamellar granule biogenesis.

作者信息

Sando G N, Zhu H, Weis J M, Richman J T, Wertz P W, Madison K C

机构信息

Marshall Dermatology Research Laboratories, Department of Dermatology, University of Iowa Roy J. and Lucille A. Carver College of Medicine, Iowa City 52242, USA.

出版信息

J Invest Dermatol. 2003 Apr;120(4):531-41. doi: 10.1046/j.1523-1747.2003.12051.x.

Abstract

Lamellar granules are sphingolipid-enriched organelles, probably intimately related to the tubulo-vesicular elements of the trans-Golgi network, that deliver the precursors of stratum corneum barrier lipids to the extracellular compartment. Caveolins are cholesterol-binding scaffolding proteins that facilitate the assembly of cholesterol- and sphingolipid-enriched membrane domains known as caveolae. Similarities in the composition of lamellar granules and caveolae suggest that caveolins could be involved in lamellar granule assembly, trafficking, and/or function. In order to explore this relationship, we have examined the expression of caveolins in epidermis, keratinocyte cultures, and an isolated lamellar granule fraction using immunolabeling, immunoblotting, and northern blotting. Several antibodies show immunolocalization of caveolin-1 in the basal layer of human epidermis, with a decline in the suprabasal layers and a reemergence of expression at the stratum granulosum/stratum corneum junction. Two of three caveolin-2 antibodies show little basal staining, but strong signal throughout the rest of the epidermis, whereas a third shows a pattern like caveolin-1. An antibody against caveolin-3 shows a strong signal at the stratum granulosum/stratum corneum interface. Caveolins partially colocalize with glucocerebrosidase, an enzyme known to be critical for remodeling of extruded lamellar granule contents, with AE17, a previously described lamellar-granule-associated antibody, and with glucosylceramides, a major lipid component of lamellar granules. Caveolin-1 protein is present in undifferentiated low-calcium-grown keratinocyte cultures, decreases upon induction of differentiation, and then rises to levels above those seen in undifferentiated cultures, consistent with the immunofluorescence findings. Caveolin-1 mRNA expression parallels that of the protein. Caveolin-2 mRNA and protein expression were unchanged over the course of culture differentiation. Keratinocyte caveolin-1 mRNA expression is not induced by an increase in medium calcium level and is markedly reduced by phorbol-ester-mediated protein kinase C induction. Caveolin-1 is enriched in an isolated lamellar granule fraction that is also enriched, as we have previously described, in lysosomal acid lipase and glucocerebrosidase, and localizes to structures consistent with lamellar granules on immunoelectron microscopy. The differentiation-dependent expression of caveolin-1, the colocalization of caveolins with putative lamellar-granule-associated antigens, their enrichment in isolated lamellar granules, and their presence in lamellar-granule-like structures on immunoelectron microscopy, along with their known structural role in the assembly of glycosphingolipid- and cholesterol-enriched domains in other cell types, suggest that caveolins may play a role in lamellar granule assembly, trafficking, and/or function.

摘要

板层颗粒是富含鞘脂的细胞器,可能与反式高尔基体网络的小管-囊泡成分密切相关,它将角质层屏障脂质的前体输送到细胞外区室。小窝蛋白是结合胆固醇的支架蛋白,有助于组装富含胆固醇和鞘脂的膜结构域,即小窝。板层颗粒和小窝在组成上的相似性表明,小窝蛋白可能参与板层颗粒的组装、运输和/或功能。为了探究这种关系,我们使用免疫标记、免疫印迹和Northern印迹法检测了小窝蛋白在表皮、角质形成细胞培养物和分离的板层颗粒组分中的表达。几种抗体显示小窝蛋白-1在人表皮基底层有免疫定位,在基底层以上各层表达下降,而在颗粒层/角质层交界处表达再次出现。三种小窝蛋白-2抗体中的两种在基底层几乎没有染色,但在表皮其余部分有强烈信号,而第三种显示出与小窝蛋白-1相似的模式。一种抗小窝蛋白-3的抗体在颗粒层/角质层界面有强烈信号。小窝蛋白与葡糖脑苷脂酶(一种已知对重塑挤出的板层颗粒内容物至关重要的酶)、与AE17(一种先前描述的与板层颗粒相关的抗体)以及与葡糖神经酰胺(板层颗粒的主要脂质成分)部分共定位。小窝蛋白-1蛋白存在于未分化的低钙培养的角质形成细胞中,在诱导分化时减少,然后上升到高于未分化培养物中的水平,这与免疫荧光结果一致。小窝蛋白-1 mRNA的表达与蛋白表达平行。在培养分化过程中,小窝蛋白-2 mRNA和蛋白表达没有变化。角质形成细胞小窝蛋白-1 mRNA的表达不会因培养基钙水平的升高而诱导,并且会被佛波酯介导的蛋白激酶C诱导显著降低。小窝蛋白-1在分离的板层颗粒组分中富集,正如我们之前所描述的,该组分还富集溶酶体酸性脂肪酶和葡糖脑苷脂酶,并且在免疫电子显微镜下定位于与板层颗粒一致的结构。小窝蛋白-1的分化依赖性表达、小窝蛋白与假定的板层颗粒相关抗原的共定位、它们在分离的板层颗粒中的富集以及它们在免疫电子显微镜下在板层颗粒样结构中的存在,以及它们在其他细胞类型中在富含糖鞘脂和胆固醇的结构域组装中的已知结构作用,表明小窝蛋白可能在板层颗粒的组装、运输和/或功能中发挥作用。

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