USMF logo

Institutional Repository in Medical Sciences
of Nicolae Testemitanu State University of Medicine and Pharmacy
of the Republic of Moldova
(IRMS – Nicolae Testemitanu SUMPh)

Biblioteca Stiintifica Medicala
DSpace

University homepage  |  Library homepage

 
 
Please use this identifier to cite or link to this item: http://hdl.handle.net/20.500.12710/26921
Title: Analysis of SMN1, NAIP and GTF2H2 gene status in correlation with spinal muscular atrophy
Authors: Coliban, Iulia
Sacară, Victoria
Keywords: SMA;NAIP;GTF2H2;SMN1;deletions;frequency;molecular genetics
Issue Date: 2023
Publisher: Instituţia Publică Universitatea de Stat de Medicină şi Farmacie „Nicolae Testemiţanu” din Republica Moldova
Citation: SACARĂ, Victoria, COLIBAN, Iulia. Analysis of SMN1, NAIP and GTF2H2 gene status in correlation with spinal muscular atrophy. In: Revista de Științe ale Sănătății din Moldova = Moldovan Journal of Health Sciences. 2023, nr. 4(10), pp. 24-28. ISSN 2345-1467. DOI: https://doi.org/10.52645/MJHS.2023.4.04
Abstract: Introduction. Spinal Muscular Atrophy (SMA) is a genetic disorder caused by the loss of the survival motor neuron (SMN1) gene in over 95% of cases. Additionally, mutations in genes associated with the SMA chromosomal region can influence disease progression. Aim: To analyze the status of the NAIP and GTF2H2 genes in correlation with SMA. Material and methods. The study included 105 patients suspected for SMA of which 50 with confirmed with SMA and 55 without causative deletions, and 107 healthy, unrelated individuals. The molecular genetics methods used were mPCR, PCR-RFLP and MLPA. Results. From 105 patients, 50 were confirmed with SMA. In this group were identified in 8 patients (16%) with a homozygous deletion of exon 5 of the NAIP gene, 4 patients (8%) had a heterozygous status, and 2 (4%) had duplications. In the rest of the patients (55), in which deletions of SMN1 exon 7 were not identified, homozygous deletion of exon 5 of the NAIP gene was established in one patient (2%), 3 patients (5%) had duplications of exon 5 of the NAIP gene, and one patient had 5 copies of the NAIP gene. In the 107 healthy controls, one patient (1%) was identified with a deletion of exon 5 of the NAIP gene. None of the patients with combined deletions of SMN1 and NAIP had deletions in GTF2H2. Conclusions. The frequency of deletions in the NAIP gene was found to be higher in the SMA patient group compared to the control group. Thus, a significant relationship was identified, the P value being <0.00001. The significance threshold was set at p<0.05. The genetic patterning of genes associated with SMA is an important aspect in the study of molecular pathophysiology and assessment of disease prognosis, especially in the approach to gene therapies.
metadata.dc.relation.ispartof: Revista de Științe ale Sănătății din Moldova = Moldovan Journal of Health Sciences
URI: https://cercetare.usmf.md/sites/default/files/inline-files/Iulia%20Coliban%2C%20Victoria%20Sacar%C4%83%20Analysis%20of%20SMN1%2C%20NAIP%20and%20GTF2H2%20gene%20status%20in%20correlation%20with%20spinal%20muscular%20atrophy.pdf
https://doi.org/10.52645/MJHS.2023.4.04
http://repository.usmf.md/handle/20.500.12710/26921
ISSN: 2345-1467
Appears in Collections:Revista de Științe ale Sănătății din Moldova : Moldovan Journal of Health Sciences 2023 nr. 4(10)



Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.

 

Valid XHTML 1.0! DSpace Software Copyright © 2002-2013  Duraspace - Feedback