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熊源和人源全长性激素结合球蛋白的鉴定和比较。

Characterization and comparison of recombinant full-length ursine and human sex hormone-binding globulin.

机构信息

Department of Chemistry and Bioscience, Faculty of Engineering and Science, Aalborg University, Denmark.

Department of Cellular & Physiological Sciences, The University of British Columbia, Vancouver, BC, Canada.

出版信息

FEBS Open Bio. 2022 Feb;12(2):362-378. doi: 10.1002/2211-5463.13341. Epub 2021 Dec 13.

Abstract

Sex hormone-binding globulin (SHBG) regulates the bioavailability of sex steroid hormones in the blood. Levels of SHBG increase markedly in brown bears (Ursus arctos) during hibernation, suggesting that a key regulatory role of this protein is to quench sex steroid bioavailability in hibernation physiology. To enable characterization of ursine SHBG and a cross species comparison, we established an insect cell-based expression system for recombinant full-length ursine and human SHBG. Compared with human SHBG, we observed markedly lower secretion levels of ursine SHBG, resulting in a 10-fold difference in purified protein yield. Both human and ursine recombinant SHBG appeared as dimeric proteins in solution, with a single unfolding temperature of ~ 58 °C. The thermal stability of ursine and human SHBG increased 5.4 and 9.5 °C, respectively, in the presence of dihydrotestosterone (DHT), suggesting a difference in affinity. The dissociation constants for [ H]DHT were determined to 0.21 ± 0.04 nm for human and 1.32 ± 0.10 nm for ursine SHBG, confirming a lower affinity of ursine SHBG. A similarly reduced affinity, determined from competitive steroid binding, was observed for most steroids. Overall, we found that ursine SHBG had similar characteristics to human SHBG, specifically, being a homodimeric glycoprotein capable of binding steroids with high affinity. Therefore, ursine SHBG likely has similar biological functions to those known for human SHBG. The determined properties of ursine SHBG will contribute to elucidating its potential regulatory role in hibernation physiology.

摘要

性激素结合球蛋白 (SHBG) 调节血液中性激素的生物利用度。在冬眠期间,棕熊 (Ursus arctos) 的 SHBG 水平显著增加,这表明这种蛋白质的一个关键调节作用是在冬眠生理学中抑制性激素的生物利用度。为了能够对熊科 SHBG 进行特征描述并进行跨物种比较,我们建立了一个基于昆虫细胞的表达系统,用于表达重组全长熊科和人 SHBG。与人类 SHBG 相比,我们观察到熊科 SHBG 的分泌水平明显较低,导致纯化蛋白产量相差 10 倍。人源性和熊科重组 SHBG 在溶液中均表现为二聚体蛋白,单一解折叠温度约为 58°C。在二氢睾酮 (DHT) 的存在下,熊科和人 SHBG 的热稳定性分别增加了 5.4 和 9.5°C,表明亲和力存在差异。[ H]DHT 的解离常数分别为 0.21±0.04nm 用于人 SHBG 和 1.32±0.10nm 用于熊科 SHBG,证实了熊科 SHBG 的亲和力较低。从竞争性类固醇结合中确定的亲和力也相似,大多数类固醇均如此。总体而言,我们发现熊科 SHBG 与人 SHBG 具有相似的特征,特别是作为一种同源二聚体糖蛋白,能够与高亲和力结合类固醇。因此,熊科 SHBG 可能具有与已知的人类 SHBG 相似的生物学功能。确定的熊科 SHBG 特性将有助于阐明其在冬眠生理学中的潜在调节作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4548/8804615/f7f823df9f04/FEB4-12-362-g003.jpg

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