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分布最为广泛的桥粒钙黏蛋白,桥粒芯糖蛋白2,是半胱天冬酶3介导的凋亡机制的新靶点。

The most widespread desmosomal cadherin, desmoglein 2, is a novel target of caspase 3-mediated apoptotic machinery.

作者信息

Cirillo Nicola, Lanza Michele, De Rosa Alfredo, Cammarota Marcella, La Gatta Annalisa, Gombos Fernando, Lanza Alessandro

机构信息

Center on Craniofacial Malformations-MRI, Regione Campania, 1st School of Medicine and Surgery, II University of Naples, 80138 Naples, Italy.

出版信息

J Cell Biochem. 2008 Feb 1;103(2):598-606. doi: 10.1002/jcb.21431.

Abstract

Apoptotic cells are known to regulate the ordered dismantling of intercellular contacts through caspase activity. Despite the important role of desmoglein (Dsg) 2 in epithelial cell-cell adhesion, the fate of this widespread desmosomal cadherin during apoptosis is yet poorly understood. Here, by means of pharmacological approaches, we investigated whether Dsg2 was targeted by caspases in HaCaT and HT-29 cell lines undergoing staurosporine (STS)-induced apoptosis. Results showed that STS induced a caspase-dependent form of cell-death in both keratinocytes (HaCaT) and enterocytes (HT-29), that associated with progressive depletion of Dsg2 from cell lysates. The proteolytic processing of full-length Dsg2 resulted in the appearance of a 70-kDa fragment which was released into the cytosol. Consistently, immunofluorescence studies revealed that Dsg2 staining was abolished from cell surface whereas the cytoplasmic region of Dsg2 did localize intracellularly. Plakoglobin (Pg) also underwent cleavage and detached from Dsg2. Apoptotic changes paralleled with progressive loss of intercellular adhesion strength. All these biochemical, morphological, and functional changes were regulated by caspase 3. Indeed, in the presence of the caspase 3-inhibitor z-DEVD-fmk, full-length Dsg2 protein levels were preserved, whereas the amount of the 70-kDa fragment was maintained on control levels. Furthermore, cells pretreated with z-DEVD-fmk retained the membrane labeling of Dsg2. Taken together, our data demonstrate that the apoptotic processing of Dsg2 is mediated by caspase 3 in epithelial cells.

摘要

已知凋亡细胞通过半胱天冬酶活性调节细胞间连接的有序解体。尽管桥粒芯糖蛋白(Dsg)2在上皮细胞间黏附中起重要作用,但在凋亡过程中这种广泛存在的桥粒钙黏蛋白的命运仍知之甚少。在此,我们通过药理学方法研究了在经受星形孢菌素(STS)诱导凋亡的HaCaT和HT - 29细胞系中,Dsg2是否被半胱天冬酶靶向作用。结果表明,STS在角质形成细胞(HaCaT)和肠上皮细胞(HT - 29)中均诱导了一种依赖半胱天冬酶的细胞死亡形式,这与细胞裂解物中Dsg2的逐渐消耗相关。全长Dsg2的蛋白水解加工导致出现一个70 kDa的片段,该片段被释放到细胞质中。同样,免疫荧光研究表明,细胞表面的Dsg2染色消失,而Dsg2的细胞质区域确实定位于细胞内。桥粒斑珠蛋白(Pg)也发生裂解并与Dsg2分离。凋亡变化与细胞间黏附强度的逐渐丧失平行。所有这些生化、形态和功能变化均受半胱天冬酶3调节。事实上,在存在半胱天冬酶3抑制剂z - DEVD - fmk的情况下,全长Dsg2蛋白水平得以保留,而70 kDa片段的量维持在对照水平。此外,用z - DEVD - fmk预处理的细胞保留了Dsg2的膜标记。综上所述,我们的数据表明上皮细胞中Dsg2的凋亡加工由半胱天冬酶3介导。

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