THE LIFE CYCLE OF THE STEROIDOGENIC ACUTE REGULATORY (StAR) PROTEIN: FROM TRANSCRIPTION THROUGH PROTEOLYSIS
- 1 January 2002
- journal article
- Published by Taylor & Francis in Endocrine Research
- Vol. 28 (4) , 375-386
- https://doi.org/10.1081/erc-120016812
Abstract
The Steroidogenic Acute Regulatory (StAR) protein is a mitochondrial protein required for the transport of cholesterol substrate to the P450scc enzyme located in the inner mitochondrial membranes of steroid producing cells. This study suggests that the acute regulation of the rodent StAR gene in the ovary is mediated by two factors, C/EBPbeta and GATA-4. Once translated, the StAR precursor protein is either imported into the mitochondria, or it is rapidly degraded in the cytosol. We predicted that in order to perpetuate StAR activity cycles, imported StAR should turn over rapidly to avoid a potentially harmful accumulation of the protein in sub-mitochondrial compartments. Pulse-chase experiments in metabolically labeled cells showed that: (a) the turnover rate of mature mitochondrial StAR protein (30 kDa) is much faster (t(1/2) = 4-5 h) than that of other mitochondrial proteins; (b) dissipation of the inner membrane potential (-delta psi) by carbonyl cyanide m-chlorophenylhydrazone (mCCCP) accelerates the mitochondrial degradation of StAR; (c) unexpectedly, the mitochondrial degradation of StAR is inhibited by MG132 and lactacystin, but not by epoxomicin. Furthermore, StAR degradation becomes inhibitor-resistant two hours after import. Therefore, these studies suggest a bi-phasic route of StAR turnover in the mitochondria. Shortly after import, StAR is degraded by inhibitor-sensitive protease(s) (phase I), whereas at later times, StAR turnover proceeds to completion through an MG132-resistant proteolytic activity (phase II). Collectively, this study defines StAR as a unique protein that can authentically be used to probe multiple proteolytic activities in mammalian mitochondria.Keywords
This publication has 21 references indexed in Scilit:
- Regulation of Steroidogenic Genes by Insulin-Like Growth Factor-1 and Follicle-Stimulating Hormone: Differential Responses of Cytochrome P450 Side-Chain Cleavage, Steroidogenic Acute Regulatory Protein, and 3β-Hydroxysteroid Dehydrogenase/Isomerase in Rat Granulosa Cells1Biology of Reproduction, 2002
- Transcription of Cholesterol Side-Chain Cleavage Cytochrome P450 in the Placenta: Activating Protein-2 Assumes the Role of Steroidogenic Factor-1 by Binding to an Overlapping Promoter ElementMolecular Endocrinology, 2002
- Rapid regulation of steroidogenesis by mitochondrial protein importNature, 2002
- The Role of the Steroidogenic Acute Regulatory (StAR) Protein in Female Reproductive TissuesHormone and Metabolic Research, 1999
- CCAAT Enhancer-binding Protein β and GATA-4 Binding Regions within the Promoter of the Steroidogenic Acute Regulatory Protein (StAR) Gene Are Required for Transcription in Rat Ovarian CellsJournal of Biological Chemistry, 1999
- Mitochondrial Permeability Transition and Swelling Can Occur Reversibly without Inducing Cell Death in Intact Human CellsExperimental Cell Research, 1999
- The steroidogenic acute regulatory (StAR) protein two years laterEndocrine, 1997
- Steroidogenic acute regulatory protein (StAR) retains activity in the absence of its mitochondrial import sequence: Implications for the mechanism of StAR actionProceedings of the National Academy of Sciences, 1996
- Role of Steroidogenic Acute Regulatory Protein in Adrenal and Gonadal SteroidogenesisScience, 1995
- Regulation of the Synthesis of Steroidogenic Enzymes in Adrenal Cortical Cells by ACTHAnnual Review of Physiology, 1988