Detection Rate of Cataract-Related Gene Variants in Sporadic Childhood Cataract Patients in Southern China
Zhengfen Luo1, Shengjie Yin2, Chengyao Guo1
1Joint Shantou International Eye Center of Shantou University and the Chinese University of Hong Kong (Z.L., S.Y., C.G., X.Y., G.W., Y.C., Q.L., X.X., C.P.P., T.K.N., M.Z.), Shantou, Guangdong, China; Shantou University Medical College (Z.L., C.G., X.Y.), Shantou, Guangdong, China.
Objective:
To screen for disease-associated variants in the cataract-related genes in Chinese sporadic childhood cataract patients by whole exome sequencing analysis.
Design:
Prospective cohort study.
Subjects:
Total 145 sporadic childhood cataract patients from southern China were recruited.
Methods:
All patients and their parents received complete ophthalmic examinations. Rare variants in 495 reported cataract-related genes were identified by whole exome sequencing analysis and analyzed by multiple bioinformatics programs, including AlphaMissense and the Encyclopedia of Domains. The variants were verified by Sanger sequencing, and the variant protein structures were modeled by AlphaFold2.
Main Outcomes Measures:
Disease-associated variants identified from 495 reported cataract-related genes.
Results:
In total, 155 rare variants were identified in 72 cataract-related genes in 127 patients by whole exome sequencing, which were not found in 200 unrelated control subjects. Of these variants, 11 previously reported variants were found in 15 patients, and 26 novel damaging variants were identified in 36 patients. CRYAA variants were detected with highest frequency among 6.21% cataract patients (9/145). In addition, genetic and allelic heterogeneities existed among the childhood cataract patients. The nonsense and frameshift variants had greater effects on the AlphaFold2-modeled protein structures than the missense variants.
Conclusions:
This study revealed that 35.17% (51/145) sporadic childhood cataract patients in southern China harbored damaging variants in cataract-related genes, expanding the genetic variation spectrum of childhood cataracts.
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