Literature DB >> 29995203

Heterozygous mutations in the cholesterol side-chain cleavage enzyme gene (CYP11A1) can cause transient adrenal insufficiency and life-threatening failure to thrive.

Dimitrios T Papadimitriou1,2, Christina Bothou3, Diagoras Zarganis4, Maria Karantza5, Anastasios Papadimitriou6.   

Abstract

The first and rate-limited step of steroidogenesis in all steroidogenic tissues is the conversion of cholesterol to pregnenolone, catalysed by P450scc side-chain cleavage enzyme (CYP11A1 gene-SCC). SCC deficiency has been characterised as an autosomal recessive disorder, although it may also be inherited as an autosomal dominant trait in humans. Here, we describe a family of three members carrying the same novel heterozygous CYP11A1 mutation, a c.235G > A missense variant in exon 1: pVal79Ile. A 46 XY boy (P1) was presented at the age of 3 months with early onset adrenal insufficiency and life-threatening failure to thrive, with low adrenal androgens but normal external genitalia. Five years later, the parents had twin girls, one of whom (P2) presented acute adrenal crisis a few hours after birth. The father (P3), born at term, was reported as having suffered from failure to thrive during the neonatal period, though not his only male sibling. This report of severe early adrenal insufficiency caused by a heterozygous mutation of the CYP11A1 gene clearly demonstrates that SCC deficiency may be inherited as an autosomal dominant trait in humans.

Entities:  

Keywords:  CYP11A1; Failure to thrive; Neonatal adrenal crisis; SCC

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Year:  2018        PMID: 29995203     DOI: 10.1007/s42000-018-0048-y

Source DB:  PubMed          Journal:  Hormones (Athens)        ISSN: 1109-3099            Impact factor:   2.885


  2 in total

Review 1.  Congenital Adrenal Hyperplasias Presenting in the Newborn and Young Infant.

Authors:  Antonio Balsamo; Federico Baronio; Rita Ortolano; Soara Menabo; Lilia Baldazzi; Valeria Di Natale; Sofia Vissani; Alessandra Cassio
Journal:  Front Pediatr       Date:  2020-12-22       Impact factor: 3.418

2.  Computational analysis on two putative mitochondrial protein-coding genes from the Emydura subglobosa genome: A functional annotation approach.

Authors:  Megan Yu
Journal:  PLoS One       Date:  2022-08-18       Impact factor: 3.752

  2 in total

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