Identification and Analysis of a Novel NR0B1 Mutation in Late-Onset Adrenal Hypoplasia Congenita and Hypogonadism

Author:

Hasegawa Yutaka1ORCID,Takahashi Yoshihiko1,Kezuka Yuichiro23,Obara Wataru4,Kato Yoichiro4,Tamura Shukuko1,Onodera Ken1,Segawa Toshie1,Oda Tomoyasu1,Sato Marino1,Nata Koji5,Nonaka Takamasa2,Ishigaki Yasushi1ORCID

Affiliation:

1. Division of Diabetes, Metabolism and Endocrinology, Department of Internal Medicine, Iwate Medical University, Yahaba, Japan

2. Division of Structural Biology, Department of Pharmaceutical Sciences, Iwate Medical University, Yahaba, Japan

3. Thermo Fisher Scientific, Life Technologies Japan Ltd., Tokyo, Japan

4. Department of Urology, School of Medicine, Iwate Medical University, Yahaba, Japan

5. Division of Medical Biochemistry, School of Pharmacy, Iwate Medical University, Yahaba, Japan

Abstract

Abstract Objective X-linked adrenal hypoplasia congenita (AHC) is a rare disorder characterized by primary adrenal insufficiency and hypogonadotropic hypogonadism (HHG) caused by mutations of the NR0B1/DAX1 gene. We aimed to search for the presence of any NR0B1/DAX1 gene mutations in a referred patient and to further characterize the phenotypes of the identified mutation. Case Presentation Herein, we report a Japanese patient with a novel missense mutation of the NR0B1/DAX1 gene resulting in adult-onset AHC and HHG. The patient was referred with diffuse skin pigmentation at 28 years of age, presented partial adrenal insufficiency and had undiagnosed incomplete HHG. Urological examination revealed severe oligospermia and testicular microlithiasis. Results The NR0B1/DAX1 gene mutation was identified by exome sequencing as a novel missense mutation (c.884A>T, p.Leu295His). We conducted in silico modeling of this mutant NR0B1/DAX1 protein (p.Leu295His) which affected the conserved hydrophobic core of the putative ligand-binding domain (LBD). In addition, functional analysis revealed that this mutant showed a decreased ability as a transcriptional repressor to suppress target genes, such as STAR and LHB. Furthermore, this mutant showed functionally impaired repression of steroidogenesis in human adrenocortical H295R cells. Conclusions We identified a novel missense mutation of the NR0B1/DAX1 gene in a patient suffering from late-onset AHC and HHG, who presented with oligospermia and testicular microlithiasis. This mutant NR0B1/DAX1 protein was found to have reduced repressor activity, according to in vitro studies, clinically consistent with the patient’s phenotypic features.

Publisher

The Endocrine Society

Subject

Endocrinology, Diabetes and Metabolism

Reference37 articles.

1. Clinical and functional effects of mutations in the DAX-1 gene in patients with adrenal hypoplasia congenita;Reutens;J Clin Endocrinol Metab.,1999

2. DAX-1 inhibits SF-1-mediated transactivation via a carboxy-terminal domain that is deleted in adrenal hypoplasia congenita;Ito;Mol Cell Biol.,1997

3. Missense mutations cluster within the carboxyl-terminal region of DAX-1 and impair transcriptional repression;Achermann;J Clin Endocrinol Metab.,2001

4. Analysis of DAX1 (NR0B1) and steroidogenic factor-1 (NR5A1) in children and adults with primary adrenal failure: ten years’ experience;Lin;J Clin Endocrinol Metab.,2006

5. Late-onset X-linked adrenal hypoplasia (DAX-1, NR0B1): two new adult-onset cases from a single center;Kyriakakis;Pituitary.,2017

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