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在黑素细胞系细胞中,CD44s的黏附功能、自发及佛波酯诱导的CD44裂解在翻译后水平受到调控。

CD44s adhesive function spontaneous and PMA-inducible CD44 cleavage are regulated at post-translational level in cells of melanocytic lineage.

作者信息

Gasbarri A, Del Prete F, Girnita L, Martegani M P, Natali P G, Bartolazzi A

机构信息

Laboratory of Immunology, Regina Elena Cancer Institute, 00158 Rome, Italy.

出版信息

Melanoma Res. 2003 Aug;13(4):325-37. doi: 10.1097/00008390-200308000-00001.

Abstract

Adhesion between the CD44s receptor and hyaluronic acid plays an important role in cell migration, tumour growth and progression. Although the alternative splicing of CD44 variant exons represents the principal regulatory mechanism of CD44-mediated functions, CD44v spliced variants are scantily expressed in melanoma cells. For this reason, we have investigated the possibility that post-translational modifications of the CD44 standard receptor could play a pivotal role in regulating CD44-mediated functions in melanoma. Using metabolic inhibitors of N- and O-glycosylation, as well as melanoma transfectants expressing CD44s O-glycosylation site-specific mutants, we performed structural and functional analysis of N- and O-deglycosylated CD44s molecules expressed in melanoma cells. We discovered that complete N- and O-glycosylation is not required by CD44s to be correctly expressed on the melanoma cell surface. Indeed, variably glycosylated and functionally different CD44s molecules were constitutively expressed in primary and metastatic lesions. Furthermore, we observed that changes in N- and O-glycosylation of CD44s could modulate its cleavage. In fact, spontaneous CD44s shedding was dependent on the presence of partial or complete O-glycosylation of four serine-glycine motifs localized in the membrane-proximal CD44 ectodomain. Mutation of these serine residues, as well as an extensive metabolic O-deglycosylation, strongly impaired spontaneous CD44 shedding. Furthermore, an O-glycosylation-independent mechanism of CD44 cleavage has been identified. This alternative mechanism of receptor cleavage is phorbol 12-myristate-13-acetate (PMA) inducible, mediated by metalloproteinase and requires the presence of N-linked sugar residues. Our findings demonstrate that the post-translational modification of CD44s represents the principal regulatory mechanism of CD44s-mediated functions in melanoma.

摘要

CD44s受体与透明质酸之间的黏附在细胞迁移、肿瘤生长和进展中起着重要作用。尽管CD44可变外显子的选择性剪接是CD44介导功能的主要调控机制,但CD44v剪接变体在黑色素瘤细胞中表达稀少。因此,我们研究了CD44标准受体的翻译后修饰在调节黑色素瘤中CD44介导功能方面可能发挥关键作用的可能性。我们使用N-糖基化和O-糖基化的代谢抑制剂,以及表达CD44s O-糖基化位点特异性突变体的黑色素瘤转染细胞,对黑色素瘤细胞中表达的N-去糖基化和O-去糖基化CD44s分子进行了结构和功能分析。我们发现,CD44s在黑色素瘤细胞表面正确表达并不需要完全的N-糖基化和O-糖基化。事实上,在原发性和转移性病变中持续表达了糖基化程度不同且功能各异的CD44s分子。此外,我们观察到CD44s的N-糖基化和O-糖基化变化可调节其裂解。实际上,CD44s的自发脱落取决于位于膜近端CD44胞外域的四个丝氨酸-甘氨酸基序的部分或完全O-糖基化的存在。这些丝氨酸残基的突变以及广泛的代谢性O-去糖基化严重损害了CD44的自发脱落。此外,还确定了一种不依赖O-糖基化的CD44裂解机制。这种受体裂解的替代机制可被佛波酯12-肉豆蔻酸酯-13-乙酸酯(PMA)诱导,由金属蛋白酶介导,并且需要N-连接糖残基的存在。我们的研究结果表明,CD44s的翻译后修饰是黑色素瘤中CD44s介导功能的主要调控机制。

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