Literature DB >> 26517903

ABCA3, a key player in neonatal respiratory transition and genetic disorders of the surfactant system.

Donatella Peca1, Renato Cutrera2, Andrea Masotti3, Renata Boldrini4, Olivier Danhaive5.   

Abstract

Genetic disorders of the surfactant system are rare diseases with a broad range of clinical manifestations, from fatal respiratory distress syndrome (RDS) in neonates to chronic interstitial lung disease (ILD) in children and adults. ABCA3 [ATP-binding cassette (ABC), subfamily A, member 3] is a lung-specific phospholipid transporter critical for intracellular surfactant synthesis and storage in lamellar bodies (LBs). Its expression is developmentally regulated, peaking prior to birth under the influence of steroids and transcription factors. Bi-allelic mutations of the ABCA3 gene represent the most frequent cause of congenital surfactant deficiency, indicating its critical role in lung function. Mutations affect surfactant lipid and protein processing and LBs' morphology, leading to partial or total surfactant deficiency. Approximately 200 mutations have been reported, most of which are unique to individuals and families, which makes diagnosis and prognosis challenging. Various types of mutations, affecting different domains of the protein, account in part for phenotype diversity. Disease-causing mutations have been reported in most coding and some non-coding regions of the gene, but tend to cluster in the first extracellular loop and the second nucleotide-binding domain (NBD), leading to defective glycosylation and trafficking defects and interfering with ATP binding and hydrolysis respectively. Mono-allelic damaging and benign variants are often subclinical but may act as disease modifiers in lung diseases such as RDS of prematurity or associate with mutations in other surfactant-related genes. Diagnosis is complex but essential and should combine pathology and ultrastructure studies on lung biopsy with broad-spectrum genetic testing of surfactant-related genes, made possible by recent technology advances in the massive parallel sequencing technology.
© 2015 Authors; published by Portland Press Limited.

Entities:  

Keywords:  genetics; interstitial lung disease; neonate; respiratory distress syndrome; surfactant; ultrastructure

Mesh:

Substances:

Year:  2015        PMID: 26517903     DOI: 10.1042/BST20150100

Source DB:  PubMed          Journal:  Biochem Soc Trans        ISSN: 0300-5127            Impact factor:   5.407


  14 in total

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10.  Neonatal respiratory failure due to novel compound heterozygous mutations in the ABCA3 lipid transporter.

Authors:  Zoltán N Oltvai; Eric A Smith; Katie Wiens; Lawrence M Nogee; Mark Luquette; Andrew C Nelson; Kathryn A Wikenheiser-Brokamp
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