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首页> 外文期刊>Proteomics >Glycomic mapping of pseudomucinous human ovarian cyst glycoproteins: identification of Lewis and sialyl Lewis glycotopes.
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Glycomic mapping of pseudomucinous human ovarian cyst glycoproteins: identification of Lewis and sialyl Lewis glycotopes.

机译:伪粘液性人类卵巢囊肿糖蛋白的糖映射图:路易斯和唾液酸路易斯糖基的鉴定。

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摘要

Expression of sialyl Lewis x (sLe(x)) and sialyl Lewis a (sLe(a)) on cell-surface glycoproteins endows cells with the ability to adhere to E-, P-, and L-selectins present on endothelia, platelets, or leukocytes. Special arrangements of these glycotopes in cancers are thought to play a key role in metastasis. Previous studies have mostly described membrane-bound sLe(x) and sLe(a) activities. In this report, the major O-glycans of the secreted human ovarian cyst sialoglycoproteins from a Le(a+) nonsecretor individual (human ovarian cyst sample 350) were characterized by MS/MS analyses and immuno-/lectin-chemical assays. The results showed that HOC 350 carries a large number of epitopes for sLe(x), sLe(a), and Le(a) reactive antibodies. Advanced MS/MS sequencing coupled with mild periodate oxidation and exoglycosidase digestions further revealed that the O-glycans from HOC 350 are mostly of core 1 and 2 structures, extended and branched on the 3-arm with both type I and type II chains, complete with variable degrees of terminal sialylation and/or fucosylation to yield the sLe(x) or sLe(a) epitopes. Thus, the underlying core and peripheral backbone structures are similar to that of a previously proposed composite structural model for nonsialylated human ovarian cysts O-glycans, but with some notable distinguishing structural features in addition to sialylation.
机译:唾液酸化的Lewis x(sLe(x))和唾液酸化的Lewis a(sLe(a))在细胞表面糖蛋白上的表达赋予细胞粘附内皮素,血小板和L-选择素的能力,或白细胞。这些糖基在癌症中的特殊排列被认为在转移中起关键作用。先前的研究主要描述了膜结合的sLe(x)和sLe(a)活性。在此报告中,通过MS / MS分析和免疫/凝集素化学分析对来自Le(a +)非分泌者(人卵巢囊肿样品350)的人卵巢囊肿唾液酸糖蛋白分泌的主要O-聚糖进行了表征。结果显示,HOC 350携带大量sLe(x),sLe(a)和Le(a)反应性抗体的表位。先进的MS / MS测序加上适度的高碘酸氧化和糖苷外切酶消化进一步揭示,来自HOC 350的O-聚糖大部分为核心1和2结构,在I型和II型链均完整的3-臂上延伸并分支。具有可变程度的末端唾液酸化和/或岩藻糖基化以产生sLe(x)或sLe(a)表位。因此,基本的核心和外围骨架结构与先前提出的用于非唾液酸化的人卵巢囊肿O-聚糖的复合结构模型相似,但是除了唾液酸化以外还具有一些显着的区别性结构特征。

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