Human Molecular Genetics Program, Children's Memorial Research Center, Department of Pediatrics, Northwestern University, Feinberg School of Medicine, Chicago, Illinois, USA.
Prog Mol Biol Transl Sci. 2010;93:113-32. doi: 10.1016/S1877-1173(10)93006-8.
The glycosaminoglycan chondroitin sulfate (CS) consists of long linear chains of repeating disaccharide units, which are covalently attached to core proteins to form CS-proteoglycans. These molecules have been shown to fulfill important biological functions in development, disease, and signaling. Biosynthesis of CS takes place in the Golgi apparatus. Concomitant to chondroitin chain elongation, sulfation of specific carbon residues by chondroitin sulfotransferase enzymes takes place. The sulfation balance and pattern of CS on specific carbon residues are tightly regulated during development, injury, and disease, with the temporal and spatial expression of chondroitin sulfotransferase genes believed to be a crucial determinant of this fine balance of chondroitin sulfation. Chondroitin-4-sulfotransferase-1 (C4ST-1)/carbohydrate sulfotransferase 11 (CHST11) is one of the enzymes involved in the sulfation of chondroitin by catalyzing the transfer of sulfate groups from a sulfate donor to the carbon-4 position of the N-acetylgalactosamine sugar of the repeating disaccharide units. Here, I summarize the significant recent advances in our understanding of the roles of C4ST-1 in vertebrate development, disease, and signaling pathways, and the transcriptional regulation of the C4ST-1 gene. Proper 4-sulfation of chondroitin by C4ST-1 plays a crucial role in the skeletal development and signaling events, and new evidence is suggestive of a potential role for C4ST-1 in human disease, including cancer.
糖胺聚糖硫酸软骨素 (CS) 由重复二糖单位的长线性链组成,这些二糖单位通过共价键与核心蛋白结合形成 CS-蛋白聚糖。这些分子已被证明在发育、疾病和信号转导中具有重要的生物学功能。CS 的生物合成发生在高尔基体内。伴随着软骨素链的延伸,软骨素硫酸转移酶酶会对特定碳原子进行硫酸化。在发育、损伤和疾病过程中,CS 上特定碳原子的硫酸化平衡和模式受到严格调控,软骨素硫酸转移酶基因的时空表达被认为是这种软骨素硫酸化精细平衡的关键决定因素。软骨素-4-硫酸转移酶-1 (C4ST-1)/碳水化合物硫酸转移酶 11 (CHST11) 是参与软骨素硫酸化的酶之一,通过将硫酸基团从硫酸供体转移到重复二糖单位的 N-乙酰半乳糖胺糖的碳-4 位置来催化反应。在这里,我总结了我们对 C4ST-1 在脊椎动物发育、疾病和信号通路中的作用以及 C4ST-1 基因的转录调控的理解的重要最新进展。C4ST-1 对软骨素的正确 4-硫酸化在骨骼发育和信号事件中起着至关重要的作用,新的证据表明 C4ST-1 在人类疾病(包括癌症)中可能具有潜在作用。