Department of Chemistry, University of California, Riverside, Riverside, California 92502, United States.
Chem Res Toxicol. 2022 Aug 15;35(8):1418-1424. doi: 10.1021/acs.chemrestox.2c00167. Epub 2022 Aug 4.
The cochaperone Aha1 activates HSP90 ATPase to promote the folding of its client proteins; however, very few client proteins of Aha1 are known. With the use of an ascorbate peroxidase (APEX)-based proximity labeling method, we identified SULT1A1 as a proximity protein of HSP90 that is modulated by genetic depletion of Aha1. Immunoprecipitation followed by Western blot analysis showed the interaction of SULT1A1 with Aha1, but not HSP90. We also observed a reduced level of SULT1A1 protein upon genetic depletion of Aha1 but not upon pharmacological inhibition of HSP90, suggesting that the SULT1A1 protein level is regulated by Aha1 alone. Maturation-dependent interaction assay results showed that Aha1, but not HSP90, binds preferentially to newly synthesized SULT1A1. Reconstitution of Aha1-depleted cells with wild-type Aha1 and its E67K mutant, which is deficient in interacting with HSP90, restored SULT1A1 protein to the same level. Nonetheless, complementation of Aha1-depleted cells with an Aha1 mutant lacking the first 20 amino acids, which disrupts its autonomous chaperone function, was unable to rescue the SULT1A1 protein level. Together, our study revealed, for the first time, Aha1 as an autonomous chaperone in regulating SULT1A1. SULT1A1 is a phase-II metabolic enzyme, where it adds sulfate groups to hydroxyl functionalities in endogenous hormones and xenobiotic chemicals to improve their solubilities and promote their excretion. Thus, our work suggests the role of Aha1 cochaperone in modulating the detoxification of endogenous and environmental chemicals.
伴侣蛋白 Aha1 激活 HSP90 ATP 酶以促进其客户蛋白的折叠;然而,已知的 Aha1 客户蛋白很少。使用基于抗坏血酸过氧化物酶 (APEX) 的邻近标记方法,我们鉴定出 SULT1A1 是 HSP90 的邻近蛋白,其表达受 Aha1 基因缺失的调节。免疫沉淀后进行 Western blot 分析显示 SULT1A1 与 Aha1 相互作用,但与 HSP90 不相互作用。我们还观察到 Aha1 基因缺失时 SULT1A1 蛋白水平降低,但 HSP90 药理学抑制时 SULT1A1 蛋白水平没有降低,表明 SULT1A1 蛋白水平仅受 Aha1 调节。成熟依赖性相互作用测定结果表明,Aha1 而不是 HSP90 优先与新合成的 SULT1A1 结合。用野生型 Aha1 和其 E67K 突变体(与 HSP90 相互作用缺陷)重建 Aha1 耗尽的细胞,将 SULT1A1 蛋白恢复到相同水平。尽管如此,用缺乏与 HSP90 相互作用的第一个 20 个氨基酸的 Aha1 突变体(破坏其自主伴侣功能)补充 Aha1 耗尽的细胞,无法挽救 SULT1A1 蛋白水平。总之,我们的研究首次揭示了 Aha1 作为调节 SULT1A1 的自主伴侣。SULT1A1 是一种 II 相代谢酶,它在内源性激素和外源性化学物质的羟基功能上添加硫酸基团,以提高它们的溶解度并促进其排泄。因此,我们的工作表明 Aha1 伴侣蛋白在调节内源性和环境化学物质的解毒中的作用。