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从基因组到糖组的翻译:高尔基器的作用。

Translation of genome to glycome: role of the Golgi apparatus.

机构信息

Institute of Biochemistry and Cellular Biology, National Research Council of Italy, Napoli, Italy.

出版信息

FEBS Lett. 2019 Sep;593(17):2390-2411. doi: 10.1002/1873-3468.13541. Epub 2019 Aug 8.

Abstract

Glycans are one of the four biopolymers of the cell and they play important roles in cellular and organismal physiology. They consist of both linear and branched structures and are synthesized in a nontemplated manner in the secretory pathway of mammalian cells with the Golgi apparatus playing a key role in the process. In spite of the absence of a template, the glycans synthesized by a cell are not a random collection of possible glycan structures but a distribution of specific glycans in defined quantities that is unique to each cell type (Cell type here refers to distinct cell forms present in an organism that can be distinguished based on morphological, phenotypic and/or molecular criteria.) While information to produce cell type-specific glycans is encoded in the genome, how this information is translated into cell type-specific glycome (Glycome refers to the quantitative distribution of all glycan structures present in a given cell type.) is not completely understood. We summarize here the factors that are known to influence the fidelity of glycan biosynthesis and integrate them into known glycosylation pathways so as to rationalize the translation of genetic information to cell type-specific glycome.

摘要

聚糖是细胞的四种生物聚合物之一,它们在细胞和生物机体生理学中发挥着重要作用。它们既有线性结构也有分支结构,在哺乳动物细胞的分泌途径中以非模板方式合成,而高尔基体在该过程中起着关键作用。尽管没有模板,但细胞合成的聚糖并不是可能的聚糖结构的随机集合,而是特定聚糖在特定数量上的分布,这种分布在每种细胞类型中都是独特的(这里的细胞类型是指存在于生物体内的不同细胞形式,可以根据形态学、表型和/或分子标准来区分。)虽然产生细胞类型特异性聚糖的信息被编码在基因组中,但如何将这些信息翻译成细胞类型特异性聚糖组(聚糖组是指给定细胞类型中存在的所有聚糖结构的定量分布。)尚不完全清楚。我们在这里总结了已知影响聚糖生物合成保真度的因素,并将其整合到已知的糖基化途径中,以便将遗传信息合理地翻译成细胞类型特异性聚糖组。

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