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细菌糖蛋白:功能、生物合成及应用

Bacterial glycoproteins: functions, biosynthesis and applications.

作者信息

Upreti Raj K, Kumar Manoj, Shankar V

机构信息

Biomembrane Laboratory, Industrial Toxicology Research Centre, Lucknow, India.

出版信息

Proteomics. 2003 Apr;3(4):363-79. doi: 10.1002/pmic.200390052.

Abstract

Although widely distributed in eukaryotic cells glycoproteins appear to be rare in prokaryotic organisms. The prevalence of the misconception that bacteria do not glycosylate their proteins has been a subject matter of discussion for a long time. Glycoconjugates that are linked to proteins or peptides, generated by the ribosomal translational mechanism have been reported only in the last two to three decades in a few prokaryotic organisms. Most studied prokaryotic glycoproteins are the S-layer glycoproteins of Archeabacteria. Apart from these, membrane-associated, surface-associated, secreted glycoproteins and exoenzymes glycoproteins are also well documented in both, Archea and Eubacteria. From the recent literature, it is now clear that prokaryotes are capable of glycosylating proteins. In general, prokaryotes are deprived of the cellular organelles required for glycosylation. In prokaryotes many different glycoprotein structures have been observed that display much more variation than that observed in eukaryotes. Besides following similar mechanisms in the process of glycosylation, prokaryotes have also been shown to use mechanisms that are different from those found in eukaryotes. The knowledge pertaining to the functional aspects of prokaryotic glycoproteins is rather scarce. This review summarizes developments and understanding relating to characteristics, synthesis, and functions of prokaryotic glycoproteins. An extensive summary of glycosylation that has been reported to occur in bacteria has also been tabulated. Various possible applications of these diverse biomolecules in biotechnology, vaccine development, pharmaceutics and diagnostics are also touched upon.

摘要

尽管糖蛋白广泛分布于真核细胞中,但在原核生物中似乎很少见。长期以来,关于细菌不会对其蛋白质进行糖基化修饰这一误解的普遍存在一直是讨论的主题。仅在过去二三十年里,才在少数原核生物中报道了通过核糖体翻译机制与蛋白质或肽相连的糖缀合物。大多数被研究的原核糖蛋白是古细菌的S层糖蛋白。除此之外,在古细菌和真细菌中,与膜相关、与表面相关、分泌的糖蛋白以及外酶糖蛋白也都有充分的文献记载。从最近的文献来看,现在很清楚原核生物能够对蛋白质进行糖基化修饰。一般来说,原核生物缺乏糖基化所需的细胞器。在原核生物中,已经观察到许多不同的糖蛋白结构,其表现出的变异比在真核生物中观察到的要多得多。除了在糖基化过程中遵循类似机制外,原核生物还被证明使用了与真核生物不同的机制。关于原核糖蛋白功能方面的知识相当匮乏。这篇综述总结了与原核糖蛋白的特征、合成和功能相关的进展和认识。还列出了已报道在细菌中发生的糖基化的广泛总结。这些多样的生物分子在生物技术、疫苗开发、制药和诊断中的各种可能应用也有所涉及。

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