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影响克氏锥虫粘蛋白运输、加工和分泌的结构特征。

Structural features affecting trafficking, processing, and secretion of Trypanosoma cruzi mucins.

机构信息

Instituto de Investigaciones Biotecnológicas "Dr. Rodolfo Ugalde," Av. 25 de Mayo y Francia, Campus UNSAM, San Martín 1650, Buenos Aires, Argentina.

出版信息

J Biol Chem. 2012 Jul 27;287(31):26365-76. doi: 10.1074/jbc.M112.354696. Epub 2012 Jun 15.

Abstract

Trypanosoma cruzi is wrapped by a dense coat of mucin-type molecules encoded by complex gene families termed TcSMUG and TcMUC, which are expressed in the insect- and mammal-dwelling forms of the parasite, respectively. Here, we dissect the contribution of distinct post-translational modifications on the trafficking of these glycoconjugates. In vivo tracing and characterization of tagged-variants expressed by transfected epimastigotes indicate that although the N-terminal signal peptide is responsible for targeting TcSMUG products to the endoplasmic reticulum (ER), the glycosyl phosphatidylinositol (GPI)-anchor likely functions as a forward transport signal for their timely progression along the secretory pathway. GPI-minus variants accumulate in the ER, with only a minor fraction being ultimately released to the medium as anchorless products. Secreted products, but not ER-accumulated ones, display several diagnostic features of mature mucin-type molecules including extensive O-type glycosylation, Galf-based epitopes recognized by monoclonal antibodies, and terminal Galp residues that become readily sialylated upon addition of parasite trans-sialidases. Processing of N-glycosylation site(s) is dispensable for the overall TcSMUG mucin-type maturation and secretion. Despite undergoing different O-glycosylation elaboration, TcMUC reporters yielded quite similar results, thus indicating that (i) molecular trafficking signals are structurally and functionally conserved between mucin families, and (ii) TcMUC and TcSMUG products are recognized and processed by a distinct repertoire of stage-specific glycosyltransferases. Thus, using the fidelity of a homologous expression system, we have defined some biosynthetic aspects of T. cruzi mucins, key molecules involved in parasite protection and virulence.

摘要

克氏锥虫被一层密集的粘蛋白型分子包裹,这些分子由复杂的基因家族编码,分别称为 TcSMUG 和 TcMUC,它们在寄生虫的昆虫和哺乳动物栖居形式中表达。在这里,我们剖析了不同翻译后修饰对这些糖缀合物运输的贡献。体内追踪和转染的前鞭毛体表达的标记变体的特征表明,尽管 N 端信号肽负责将 TcSMUG 产物靶向内质网(ER),但糖基磷脂酰肌醇(GPI)锚可能作为它们及时沿分泌途径前进的正向运输信号。GPI 缺失变体在 ER 中积累,只有一小部分最终作为无锚产物释放到培养基中。分泌产物,但不是 ER 中积累的产物,显示出成熟粘蛋白型分子的几个诊断特征,包括广泛的 O 型糖基化、单克隆抗体识别的 Galf 基表位,以及末端 Galp 残基,在寄生虫转涎酸酶添加后很容易发生唾液酸化。N-糖基化位点的加工对于 TcSMUG 粘蛋白型的整体成熟和分泌是可有可无的。尽管 TcMUC 报告者经历了不同的 O-糖基化修饰,但产生了相当相似的结果,这表明 (i) 分子运输信号在粘蛋白家族之间在结构和功能上是保守的,以及 (ii) TcMUC 和 TcSMUG 产物被独特的阶段特异性糖基转移酶识别和加工。因此,使用同源表达系统的保真度,我们定义了克氏锥虫粘蛋白的一些生物合成方面,这些粘蛋白是寄生虫保护和毒力的关键分子。

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