| Literature DB >> 32962661 |
Srijana Adhikari1, Neelam Thakur2, Ujjowala Shrestha3, Mohan K Shrestha4, Murarai Manshrestha4, Bijay Thapa5, Manish Poudel4, Ajaya Kunwar6.
Abstract
BACKGROUND: Genetic eye diseases constitute a large and heterogeneous group of childhood ocular morbidity. Individual diseases may cause multiple structural anomalies and developmental features. Nepal Pediatric Ocular Disease Study (NPODS) was a population-based epidemiological study conducted across three ecological regions of Nepal to determine the prevalence and etiology of childhood ocular morbidity and blindness. In Phase II of this study, genetic analysis was performed for children who were found to have congenital ocular anomalies.Entities:
Keywords: Congenital anomalies; Genetics; Nepal; Ocular; Pediatric
Mesh:
Substances:
Year: 2020 PMID: 32962661 PMCID: PMC7510079 DOI: 10.1186/s12881-020-01116-9
Source DB: PubMed Journal: BMC Med Genet ISSN: 1471-2350 Impact factor: 2.103
Fig. 1Agarose Gel electrophoresis
Fig. 2Agarose Gel electrophoresis of PCR products on 2% (w/V) agarose gel
Pattern of congenital ocular diseases in three ecological regions
| Disease pattern | Low lands N(%) | Hills | Mountains |
|---|---|---|---|
| Coloboma | 4 (16) | 0 (0) | 0 (0) |
| Congenital Ptosis | 7 (28) | 3 (12) | 1 (4) |
| Congenital cataract | 3 (12) | 1 (4) | 1 (4) |
| Microphthalmous | 3 (12) | 0 | 0 |
| Nevus of Ota | 0 | 0 | 1 (4) |
| Proptosis (Crouzen syndrome) | 0 | 1 (4) | 0 |
| Total | 17 (68) | 5 (20) | 3 (12) |
The result summary of genetic analysis showing gene mutation
| RN | SN | Gene | Mutation | BASE Call | Result |
|---|---|---|---|---|---|
| 1 | A | G12411T L4137F | T | G12411T detected | |
| 2 | B | c.649G > A (Val196Met) | G | c.649G > A Not detected | |
| 3 | F | S267P (T-C) | T | Not detected | |
| 3 | F | C278F (G-T) | G | Not detected | |
| 3 | F | Q289P (A-C) | A | Not detected | |
| 4 | F | C342S (G-C) | – | Not detected | |
| 4 | F | C342Y (G-A) | – | Not detected | |
| 4 | F | C342W (C-G) | – | Not detected | |
| 4 | F | A344A (G-A) | – | Not detected | |
| 4 | F | S347C (C-G) | – | Not detected | |
| 5 | D | T > C P.Y374C | C | T > C P.Y374C detected | |
| 6 | D | A > T P.L152M | T | L152L present, mutation not detected. | |
| 7 | D | C > T P.R25W | C | Mutation not detected | |
| 8 | D | p. Gln104 X | C | p. Gln104 X Not detected | |
| 8 | D | p. Gln106 His | C | p. Gln106 His Not detected | |
| 9 | D | p. Thr186 Fs < frame shift | G | p. Thr186 Fs < frame shift Not detected | |
| 10 | C | p. Ala 57 Thr G > A | G | p. Ala 57 Thr G > A Not detected |
SN = Sample number, RN = reaction number Where, A: Congenital Ptosis, B: Congenital Cataract, C: Colobama, D: Microphthalmus, F: Crouzon Syndrome
Fig. 3Sequence result of G12411TL4137F mutation in ZFHX4 gene in a child with congenital Ptosis
Fig. 4The T > C P. Y374C mutation in STRA6 gene in a child with micropthalmous
Proportion analysis of disease according to presence or absence of mutant gene and the region
| Variables | category | N(%) | p |
|---|---|---|---|
| Region | Mountain | 2 (8) | < 0.001 |
| Hill | 5 (20) | ||
| Terai | 18 (72) | ||
| Mutation | Absent | 23 (92) | < 0.001 |
| Present | 2 (8) |