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糖蛋白生物合成的临床方面。

Clinical aspects of glycoprotein biosynthesis.

作者信息

Brockhausen I

机构信息

Department of Biochemistry, University of Toronto, Ontario, Canada.

出版信息

Crit Rev Clin Lab Sci. 1993;30(2):65-151. doi: 10.3109/10408369309084666.

Abstract

Glycoproteins are widely distributed among species in soluble and membrane-bound forms, associated with many different functions. The heterogenous sugar moieties of glycoproteins are assembled in the endoplasmic reticulum and in the Golgi and are implicated in many roles that require further elucidation. Glycoprotein-bound oligosaccharides show significant changes in their structures and relative occurrences during growth, development, and differentiation. Diverse alterations of these carbohydrate chains occur in diseases such as cancer, metastasis, leukemia, inflammatory, and other diseases. Structural alterations may correlate with activities of glycosyltransferases that assemble glycans, but often the biochemical origin of these changes remains unclear. This suggests a multitude of biosynthetic control mechanisms that are functional in vivo but have not yet been unraveled by in vitro studies. The multitude of carbohydrate alterations observed in disease states may not be the primary cause but may reflect the growth and biochemical activity of the affected cell. However, knowledge of the control mechanisms in the biosynthesis of glycoprotein glycans may be helpful in understanding, diagnosing, and treating disease.

摘要

糖蛋白以可溶形式和膜结合形式广泛分布于各种物种中,具有许多不同的功能。糖蛋白的异质糖部分在内质网和高尔基体中组装,并且涉及许多需要进一步阐明的作用。与糖蛋白结合的寡糖在生长、发育和分化过程中,其结构和相对含量会发生显著变化。这些糖链在诸如癌症、转移、白血病、炎症及其他疾病中会出现多种改变。结构改变可能与组装聚糖的糖基转移酶的活性相关,但这些变化的生化起源往往仍不清楚。这表明存在许多在体内起作用但尚未被体外研究所揭示的生物合成控制机制。在疾病状态下观察到的大量碳水化合物改变可能不是主要原因,但可能反映了受影响细胞的生长和生化活性。然而,了解糖蛋白聚糖生物合成中的控制机制可能有助于理解、诊断和治疗疾病。

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