首页> 外文期刊>The Journal of biological chemistry >Inner Mitochondrial Translocase Tim50 Interacts with 3β-Hydroxysteroid Dehydrogenase Type 2 to Regulate Adrenal and Gonadal Steroidogenesis
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Inner Mitochondrial Translocase Tim50 Interacts with 3β-Hydroxysteroid Dehydrogenase Type 2 to Regulate Adrenal and Gonadal Steroidogenesis

机译:内部线粒体译力序列TIM50与3β-羟类脱氢酶2型相互作用以调节肾上腺和性腺类系

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In the adrenals, testes, and ovaries, 3β-hydroxysteroid dehydrogenase type 2 (3βHSD2) catalyzes the conversion of pregnenolone to progesterone and dehydroepiandrostenedione to androstenedione. Alterations in this pathway can have deleterious effects, including sexual development impairment, spontaneous abortion, and breast cancer. 3βHSD2, synthesized in the cytosol, is imported into the inner mitochondrial membrane (IMM) by translocases. Steroidogenesis requires that 3βHSD2 acts as both a dehydrogenase and isomerase. To achieve this dual functionality, 3βHSD2 must undergo a conformational change; however, what triggers that change remains unknown. We propose that 3βHSD2 associates with IMM or outer mitochondrial membrane translocases facing the intermembrane space (IMS) and that this interaction promotes the conformational change needed for full activity. Fractionation assays demonstrate that 3βHSD2 associated with the IMM but did not integrate into the membrane. Through mass spectrometry and Western blotting of mitochondrial complexes and density gradient ultracentrifugation, we show that that 3βHSD2 formed a transient association with the translocases Tim50 and Tom22 and with Tim23. This association occurred primarily through the interaction of Tim50 with the N terminus of 3βHSD2 and contributed to enzymatic activity. Tim50 knockdown inhibited catalysis of dehydroepiandrostenedione to androstenedione and pregnenolone to progesterone. Although Tim50 knockdown decreased 3βHSD2 expression, restoration of expression via proteasome and protease inhibition did not rescue activity. In addition, protein fingerprinting and CD spectroscopy reveal the flexibility of 3βHSD2, a necessary characteristic for forming multiple associations. In summary, Tim50 regulates 3βHSD2 expression and activity, representing a new role for translocases in steroidogenesis.
机译:在肾上腺,睾丸和卵巢中,3β-羟类脱氢酶2(3βHSD2)催化孕蛋白酮与孕酮和脱氢苯磺酸丁酮转化为Androstentione。这种途径的改变可以具有有害影响,包括性发展障碍,自发流产和乳腺癌。 3βHSD2在胞质溶胶中合成,通过易位酶进入内部线粒体膜(IMM)。甾体素生成要求3βHSD2用作脱氢酶和异构酶。为了实现这种双重功能,3βHSD2必须经历一致性变化;但是,改变仍然未知的触发器。我们提出3βHSD2与面向膜间隙(IMS)的IMM或外部线粒体膜易位性的缔合物,并且该相互作用促进了完整活动所需的构象变化。分馏测定表明3βHSD2与IMM相关但不整合到膜中。通过质谱和蛋白质印迹的线粒体复合物和密度梯度超速离心,我们表明3βHSD2与旋转盒TIM50和TOM22和TIM23形成了瞬态关联。该关联主要通过TiM50与3βHSD2的N末端相互作用,并导致酶活性。 TIM50敲低抑制脱氢硫磺干酪丁基的催化作至亚尔罗替索对孕酮与孕酮。虽然TIM50敲低了3βHSD2表达,但通过蛋白酶体和蛋白酶抑制的表达恢复不抢救活性。此外,蛋白质指纹和CD光谱揭示了3βHSD2的柔韧性,形成多个关联的必要特征。总之,TIM50调节3βHSD2表达和活性,代表甾类化合物中易位性的新作用。

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