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The Journal of Clinical Endocrinology & Metabolism Vol. 89, No. 2 946-951
Copyright © 2004 by The Endocrine Society

Congenital Lipoid Adrenal Hyperplasia Caused by a Novel Splicing Mutation in the Gene for the Steroidogenic Acute Regulatory Protein

Alexis A. González, M. Loreto Reyes, Cristian A. Carvajal, Jaime A. Tobar, Lorena M. Mosso, Paulina Baquedano, Antonieta Solar, Alejandro Venegas and Carlos E. Fardella

Department of Endocrinology (A.A.G., C.A.C., L.M.M., C.E.F.), Pediatrics (M.L.R., P.B.), and Pathological Anatomy (A.S.), Faculty of Medicine; and Department of Molecular Genetics and Microbiology, Faculty of Biological Sciences (J.A.T., A.V.), Pontificia Universidad Católica de Chile, 114-D Santiago, Chile

Address all correspondence and requests for reprints to: Carlos E. Fardella, Department of Endocrinology, Faculty of Medicine, Pontifica Universidad Católica de Chile, Lira 85, piso 5 Santiago, Chile. E-mail: cfardella{at}med.puc.cl.

Steroidogenic acute regulatory protein (StAR) plays a crucial role in the transport of cholesterol from the cytoplasm to the inner mitochondrial membrane, facilitating its conversion to pregnenolone by cytochrome P450scc. Its essential role in steroidogenesis was demonstrated after observing that StAR gene mutations gave rise to a potentially lethal disease named congenital lipoid adrenal hyperplasia, in which virtually no steroids are produced. We report here a 2-month-old female patient, karyotype 46XY, who presented with growth failure, convulsions, dehydration, hypoglycemia, hyponatremia, hypotension, and severe hyperpigmentation suggestive of adrenal insufficiency. Serum cortisol, 17OH-progesterone, dehydroepiandrosterone sulfate, testosterone, 17OH-pregnenolone, and aldosterone levels were undetectable in the presence of high ACTH and plasma renin activity levels. Immunohistochemical analysis of testis tissues revealed the absence of StAR protein. Molecular analysis of StAR gene demonstrated a homozygous G to T mutation within the splice donor site of exon 1 (IVS1 + 1G>T). Her parents and one brother were heterozygous for this mutation. In vitro analysis of the mutation was performed in COS cells transfected with minigenes coding regions spanning exon-intron 1 to 3 carrying the mutant and the wild-type sequences. RT-PCR analyses of the mutant gene showed an abnormal mRNA transcript of 2430 bp (normal size 433 bp). Sequence analysis of the mutant mRNA demonstrated the retention of intron 1. Immunolocalization of the StAR minigene product detected the peptide in the mitochondria of COS cells transfected with the wild-type minigene but not in those transfected with the mutant minigene. We conclude that this mutation gives rise to a truncated StAR protein, which lacks an important N-terminal region and the entire lipid transfer domain.

This work was supported by el Fondo Nacional de Investigacion Cientifica y Tecnologica de Chile Proyecto 1011035.

Abbreviations: CLAH, Congenital lipoid adrenal hyperplasia; FITC, fluoroscein isothiocyanate; LC, Leydig cell(s); NV, normal value; StAR, steroidogenic acute regulatory protein; START, StAR-related lipid transfer; TSS, translation start site(s).




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