Cargando…
The Genetic Confirmation and Clinical Characterization of LOXL3-Associated MYP28: A Common Type of Recessive Extreme High Myopia
PURPOSE: In previous studies, biallelic LOXL3 variants have been shown to cause autosomal recessive Stickler syndrome in one Saudi Arabian family or autosomal recessive early-onset high myopia (eoHM, MYP28) in two Chinese families. The current study aims to elucidate the clinical and genetic feature...
Autores principales: | , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
The Association for Research in Vision and Ophthalmology
2023
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10019489/ https://www.ncbi.nlm.nih.gov/pubmed/36917121 http://dx.doi.org/10.1167/iovs.64.3.24 |
_version_ | 1784908037313527808 |
---|---|
author | Jiang, Yi Zhou, Lin Wang, Yingwei Ouyang, Jiamin Li, Shiqiang Xiao, Xueshan Jia, Xiaoyun Wang, Junwen Yi, Zhen Sun, Wenmin Jiao, Xiaodong Wang, Panfeng Hejtmancik, J. Fielding Zhang, Qingjiong |
author_facet | Jiang, Yi Zhou, Lin Wang, Yingwei Ouyang, Jiamin Li, Shiqiang Xiao, Xueshan Jia, Xiaoyun Wang, Junwen Yi, Zhen Sun, Wenmin Jiao, Xiaodong Wang, Panfeng Hejtmancik, J. Fielding Zhang, Qingjiong |
author_sort | Jiang, Yi |
collection | PubMed |
description | PURPOSE: In previous studies, biallelic LOXL3 variants have been shown to cause autosomal recessive Stickler syndrome in one Saudi Arabian family or autosomal recessive early-onset high myopia (eoHM, MYP28) in two Chinese families. The current study aims to elucidate the clinical and genetic features of LOXL3-associated MYP28 in seven new families and two previously published families. METHODS: LOXL3 variants were detected based on the exome sequencing data of 8389 unrelated probands with various ocular conditions. Biallelic variants were identified through multiple online bioinformatic tools, comparative analysis, and co-segregation analysis. The available clinical data were summarized. RESULTS: Biallelic LOXL3 variants were exclusively identified in nine of 1226 families with eoHM but in none of the 7163 families without eoHM (P = 2.97 × 10(−8), Fisher's exact test), including seven new and two previously reported families. Seven pathogenic variants were detected, including one nonsense (c.1765C>T/p.Arg589*), three frameshift (c.39dupG/p.Leu14Alafs*21; c.544delC/p.Leu182Cysfs*3, c.594delG/p.Gln199Lysfs*35), and three missense (c.371G>A/p.Cys124Tyr; c.1051G>A/p.Gly351Arg; c.1669G>A/p.Glu557Lys) variants. Clinical data of nine patients from nine unrelated families revealed myopia at the first visit at about 5 years of age, showing slow progression with age. Visual acuity at the last visit ranged from 0.04 to 0.9 (median age at last visit = 5 years, range 3.5–15 years). High myopic fundus changes, observed in all nine patients, were classified as tessellated fundus (C1) in five patients and diffuse choroidal atrophy (C2) in four patients. Electroretinograms showed mildly reduced cone responses and normal rod responses. Except for high myopia, no other specific features were shared by these patients. CONCLUSIONS: Biallelic LOXL3 variants exclusively presenting in nine unrelated patients with eoHM provide firm evidence implicating MYP28, with an estimated prevalence of 7.3 × 10(−3) in eoHM and of about 7.3 × 10(−5) in the general population for LOXL3-associated eoHM. So far, MYP28 represents a common type of autosomal recessive extreme eoHM, with a frequency comparable to LRPAP1-associated MYP23. |
format | Online Article Text |
id | pubmed-10019489 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | The Association for Research in Vision and Ophthalmology |
record_format | MEDLINE/PubMed |
spelling | pubmed-100194892023-03-17 The Genetic Confirmation and Clinical Characterization of LOXL3-Associated MYP28: A Common Type of Recessive Extreme High Myopia Jiang, Yi Zhou, Lin Wang, Yingwei Ouyang, Jiamin Li, Shiqiang Xiao, Xueshan Jia, Xiaoyun Wang, Junwen Yi, Zhen Sun, Wenmin Jiao, Xiaodong Wang, Panfeng Hejtmancik, J. Fielding Zhang, Qingjiong Invest Ophthalmol Vis Sci Genetics PURPOSE: In previous studies, biallelic LOXL3 variants have been shown to cause autosomal recessive Stickler syndrome in one Saudi Arabian family or autosomal recessive early-onset high myopia (eoHM, MYP28) in two Chinese families. The current study aims to elucidate the clinical and genetic features of LOXL3-associated MYP28 in seven new families and two previously published families. METHODS: LOXL3 variants were detected based on the exome sequencing data of 8389 unrelated probands with various ocular conditions. Biallelic variants were identified through multiple online bioinformatic tools, comparative analysis, and co-segregation analysis. The available clinical data were summarized. RESULTS: Biallelic LOXL3 variants were exclusively identified in nine of 1226 families with eoHM but in none of the 7163 families without eoHM (P = 2.97 × 10(−8), Fisher's exact test), including seven new and two previously reported families. Seven pathogenic variants were detected, including one nonsense (c.1765C>T/p.Arg589*), three frameshift (c.39dupG/p.Leu14Alafs*21; c.544delC/p.Leu182Cysfs*3, c.594delG/p.Gln199Lysfs*35), and three missense (c.371G>A/p.Cys124Tyr; c.1051G>A/p.Gly351Arg; c.1669G>A/p.Glu557Lys) variants. Clinical data of nine patients from nine unrelated families revealed myopia at the first visit at about 5 years of age, showing slow progression with age. Visual acuity at the last visit ranged from 0.04 to 0.9 (median age at last visit = 5 years, range 3.5–15 years). High myopic fundus changes, observed in all nine patients, were classified as tessellated fundus (C1) in five patients and diffuse choroidal atrophy (C2) in four patients. Electroretinograms showed mildly reduced cone responses and normal rod responses. Except for high myopia, no other specific features were shared by these patients. CONCLUSIONS: Biallelic LOXL3 variants exclusively presenting in nine unrelated patients with eoHM provide firm evidence implicating MYP28, with an estimated prevalence of 7.3 × 10(−3) in eoHM and of about 7.3 × 10(−5) in the general population for LOXL3-associated eoHM. So far, MYP28 represents a common type of autosomal recessive extreme eoHM, with a frequency comparable to LRPAP1-associated MYP23. The Association for Research in Vision and Ophthalmology 2023-03-14 /pmc/articles/PMC10019489/ /pubmed/36917121 http://dx.doi.org/10.1167/iovs.64.3.24 Text en Copyright 2023 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License. |
spellingShingle | Genetics Jiang, Yi Zhou, Lin Wang, Yingwei Ouyang, Jiamin Li, Shiqiang Xiao, Xueshan Jia, Xiaoyun Wang, Junwen Yi, Zhen Sun, Wenmin Jiao, Xiaodong Wang, Panfeng Hejtmancik, J. Fielding Zhang, Qingjiong The Genetic Confirmation and Clinical Characterization of LOXL3-Associated MYP28: A Common Type of Recessive Extreme High Myopia |
title | The Genetic Confirmation and Clinical Characterization of LOXL3-Associated MYP28: A Common Type of Recessive Extreme High Myopia |
title_full | The Genetic Confirmation and Clinical Characterization of LOXL3-Associated MYP28: A Common Type of Recessive Extreme High Myopia |
title_fullStr | The Genetic Confirmation and Clinical Characterization of LOXL3-Associated MYP28: A Common Type of Recessive Extreme High Myopia |
title_full_unstemmed | The Genetic Confirmation and Clinical Characterization of LOXL3-Associated MYP28: A Common Type of Recessive Extreme High Myopia |
title_short | The Genetic Confirmation and Clinical Characterization of LOXL3-Associated MYP28: A Common Type of Recessive Extreme High Myopia |
title_sort | genetic confirmation and clinical characterization of loxl3-associated myp28: a common type of recessive extreme high myopia |
topic | Genetics |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10019489/ https://www.ncbi.nlm.nih.gov/pubmed/36917121 http://dx.doi.org/10.1167/iovs.64.3.24 |
work_keys_str_mv | AT jiangyi thegeneticconfirmationandclinicalcharacterizationofloxl3associatedmyp28acommontypeofrecessiveextremehighmyopia AT zhoulin thegeneticconfirmationandclinicalcharacterizationofloxl3associatedmyp28acommontypeofrecessiveextremehighmyopia AT wangyingwei thegeneticconfirmationandclinicalcharacterizationofloxl3associatedmyp28acommontypeofrecessiveextremehighmyopia AT ouyangjiamin thegeneticconfirmationandclinicalcharacterizationofloxl3associatedmyp28acommontypeofrecessiveextremehighmyopia AT lishiqiang thegeneticconfirmationandclinicalcharacterizationofloxl3associatedmyp28acommontypeofrecessiveextremehighmyopia AT xiaoxueshan thegeneticconfirmationandclinicalcharacterizationofloxl3associatedmyp28acommontypeofrecessiveextremehighmyopia AT jiaxiaoyun thegeneticconfirmationandclinicalcharacterizationofloxl3associatedmyp28acommontypeofrecessiveextremehighmyopia AT wangjunwen thegeneticconfirmationandclinicalcharacterizationofloxl3associatedmyp28acommontypeofrecessiveextremehighmyopia AT yizhen thegeneticconfirmationandclinicalcharacterizationofloxl3associatedmyp28acommontypeofrecessiveextremehighmyopia AT sunwenmin thegeneticconfirmationandclinicalcharacterizationofloxl3associatedmyp28acommontypeofrecessiveextremehighmyopia AT jiaoxiaodong thegeneticconfirmationandclinicalcharacterizationofloxl3associatedmyp28acommontypeofrecessiveextremehighmyopia AT wangpanfeng thegeneticconfirmationandclinicalcharacterizationofloxl3associatedmyp28acommontypeofrecessiveextremehighmyopia AT hejtmancikjfielding thegeneticconfirmationandclinicalcharacterizationofloxl3associatedmyp28acommontypeofrecessiveextremehighmyopia AT zhangqingjiong thegeneticconfirmationandclinicalcharacterizationofloxl3associatedmyp28acommontypeofrecessiveextremehighmyopia AT jiangyi geneticconfirmationandclinicalcharacterizationofloxl3associatedmyp28acommontypeofrecessiveextremehighmyopia AT zhoulin geneticconfirmationandclinicalcharacterizationofloxl3associatedmyp28acommontypeofrecessiveextremehighmyopia AT wangyingwei geneticconfirmationandclinicalcharacterizationofloxl3associatedmyp28acommontypeofrecessiveextremehighmyopia AT ouyangjiamin geneticconfirmationandclinicalcharacterizationofloxl3associatedmyp28acommontypeofrecessiveextremehighmyopia AT lishiqiang geneticconfirmationandclinicalcharacterizationofloxl3associatedmyp28acommontypeofrecessiveextremehighmyopia AT xiaoxueshan geneticconfirmationandclinicalcharacterizationofloxl3associatedmyp28acommontypeofrecessiveextremehighmyopia AT jiaxiaoyun geneticconfirmationandclinicalcharacterizationofloxl3associatedmyp28acommontypeofrecessiveextremehighmyopia AT wangjunwen geneticconfirmationandclinicalcharacterizationofloxl3associatedmyp28acommontypeofrecessiveextremehighmyopia AT yizhen geneticconfirmationandclinicalcharacterizationofloxl3associatedmyp28acommontypeofrecessiveextremehighmyopia AT sunwenmin geneticconfirmationandclinicalcharacterizationofloxl3associatedmyp28acommontypeofrecessiveextremehighmyopia AT jiaoxiaodong geneticconfirmationandclinicalcharacterizationofloxl3associatedmyp28acommontypeofrecessiveextremehighmyopia AT wangpanfeng geneticconfirmationandclinicalcharacterizationofloxl3associatedmyp28acommontypeofrecessiveextremehighmyopia AT hejtmancikjfielding geneticconfirmationandclinicalcharacterizationofloxl3associatedmyp28acommontypeofrecessiveextremehighmyopia AT zhangqingjiong geneticconfirmationandclinicalcharacterizationofloxl3associatedmyp28acommontypeofrecessiveextremehighmyopia |