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甘油与人源半乳糖凝集素-7的结合扩展了其稳定性并调节其功能。

Binding of Glycerol to Human Galectin-7 Expands Stability and Modulates Its Functions.

机构信息

Jiangsu Key Laboratory of Brain Disease and Bioinformation, Research Center for Biochemistry and Molecular Biology, Xuzhou Medical University, Xuzhou 221004, China.

出版信息

Int J Mol Sci. 2022 Oct 14;23(20):12318. doi: 10.3390/ijms232012318.

Abstract

Glycerol is seen in biological systems as an intermediate in lipid metabolism. In recent years, glycerol has been reported to act as a chemical chaperone to correct the conformation of proteins. Here, we investigate the role of glycerol in galectin-7 (Gal-7). The thermal shift and CD assays showed that the thermal stability of Gal-7 increased with glycerol concentration but with little secondary structure changes induced by glycerol. In addition, glycerol can inhibit Gal-7-mediated erythrocyte agglutination. We also solved the crystal structures of human Gal-7 in complex with glycerol in two different conditions. Glycerol binds at the carbohydrate-recognition binding sites of Gal-7, which indicates glycerol as a small ligand for Gal-7. Surprisingly, glycerol can bind a new pocket near the N-terminus of Gal-7, which can greatly reduce the flexibility and improve the stability of this region. Moreover, overexpression of Gal-7 decreased the intracellular triglyceride levels and increased mRNA expression of aquaporin-3 (AQP-3) when HeLa cells were incubated with glycerol. These findings indicate that Gal-7 might regulate glycerol metabolism. Overall, our results on human Gal-7 raise the perspective to systematically explore this so far unrecognized phenomenon for Gal-7 in glycerol metabolism.

摘要

甘油在生物系统中被视为脂质代谢的中间产物。近年来,有报道称甘油可以作为一种化学伴侣,纠正蛋白质的构象。在这里,我们研究了甘油在半乳糖凝集素-7(Gal-7)中的作用。热位移和 CD 分析表明,Gal-7 的热稳定性随着甘油浓度的增加而增加,但甘油引起的二级结构变化很小。此外,甘油可以抑制 Gal-7 介导的红细胞聚集。我们还在两种不同条件下解决了人 Gal-7 与甘油复合物的晶体结构。甘油结合在 Gal-7 的碳水化合物识别结合位点上,这表明甘油是 Gal-7 的一种小分子配体。令人惊讶的是,甘油可以结合 Gal-7 N 端附近的一个新口袋,这可以极大地降低该区域的灵活性并提高其稳定性。此外,当 HeLa 细胞用甘油孵育时,Gal-7 的过表达降低了细胞内甘油三酯水平,并增加了水通道蛋白-3(AQP-3)的 mRNA 表达。这些发现表明 Gal-7 可能调节甘油代谢。总的来说,我们对人 Gal-7 的研究结果提出了一个观点,即需要系统地探索甘油代谢中 Gal-7 这一迄今为止尚未被认识到的现象。

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