Cancer-associated glycosphingolipid antigens: their structure, organization, and function.

Acta anatomica Pub Date : 1998-01-01 DOI:10.1159/000046451
S Hakomori
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引用次数: 141

Abstract

Experimental and human cancers are often characterized by the presence of tumor-associated glycosphingolipid (GSL) antigens defined by monoclonal antibodies. Major progress has been made during the past two decades on structural identification of these antigens. None of these structures are truly 'tumor-specific'. However, many of the antibodies show preferential or 'specific' reactivity with tumors, based on organizational differences of membrane GSLs in tumor cells versus normal cells. Clustered GSL antigens organized with transducer molecules in microdomain have been found recently to comprise a structural and functional unit involved in tumor cell adhesion coupled with signal transduction. Some of the GSL antigens have been identified as adhesion molecules recognized by carbohydrate-binding proteins or by complementary carbohydrates on target cells. Such adhesion, coupled with signaling, may initiate the metastatic process. Elucidating the mechanism of this initial adhesion/signaling step may lead to discovery of therapeutic agents that disrupt adhesion ('antiadhesion therapy') or normalize signaling ('ortho-signaling therapy'). Tumor-associated GSL antigens are also a target in immunotherapy of tumors, including development of antitumor vaccines.

癌症相关鞘糖脂抗原:它们的结构、组织和功能。
实验和人类癌症通常以单克隆抗体定义的肿瘤相关鞘糖脂(GSL)抗原的存在为特征。在过去二十年中,这些抗原的结构鉴定取得了重大进展。这些结构都不是真正的“肿瘤特异性”。然而,基于肿瘤细胞与正常细胞细胞膜GSLs的组织差异,许多抗体显示出对肿瘤的优先或“特异性”反应性。最近发现,在微结构域与换能器分子组织成簇的GSL抗原包含一个参与肿瘤细胞粘附和信号转导的结构和功能单元。一些GSL抗原已被鉴定为被碳水化合物结合蛋白或靶细胞上的互补碳水化合物识别的粘附分子。这种粘附,加上信号,可能启动转移过程。阐明这一初始粘附/信号传导步骤的机制可能会导致发现破坏粘附(“抗粘附治疗”)或使信号正常化(“正交信号治疗”)的治疗剂。肿瘤相关的GSL抗原也是肿瘤免疫治疗的靶标,包括抗肿瘤疫苗的开发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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