Background: Glaucoma is the leading cause of irreversible blindness incapacitating over 80 million people worldwide. Several pathogenetic mechanisms have been postulated to explain the optic nerve damage that occur in POAG among which genetic predisposition is prominent. Gene-Linkage-based studies have identified genes associated with POAG: Myocilin, Optineurin, WDR36, Tank-Binding Kinase (TBK1) and APbb-2. Objective: To investigate the prevalence of myocilin gene mutation in adult-onset POAG patients and non-glaucoma subjects who are indigenes of Rivers State. Methodology: In this comparative cross-sectional study, 393 POAG patients attending the Glaucoma Clinic of UPTH were compared with 393 age and sex-matched phenotypically normal participants. Clinical assessment combined with findings from clinical records was used. Venous blood was obtained for genomic analyses. Extracted DNA was sequenced with specific primers for myocilin and polymerase chain reaction. Zymo-Bead Genomic DNA kit protocol was used to detect allelic differences. Results: Total of 786 participants participated in the study. The mean age was 59.8 ± 11.8 years. The prevalence of myocilin gene mutation (MYOC) in the study population was 5.3%, in the POAG group was 8.4%, and 2.3% in the non-glaucoma group. This observed difference was statistically significant (p = 0.001). Location of the mutant myocilin gene was in GLC1A 171638779, 171638703, 171638610 and 171638608. Conclusion: Mutations in myocilin gene are associated with adult-onset POAG in Rivers State. Its relevance as a biomarker for diagnosis of adult-onset POAG needs further investigations.
References
[1]
World Health Organization (2020) Magnitude and Cause of Visual Impairment. WHO Fact Sheet No. 282. WHO, Geneva. http://who.int/
[2]
Kyari, F., Gudlavalleti, M.V., Sivsubramaniam, S., Gilbert, C.E., Abdull, M.M., Entekume, G. and Foster, A. (2009) Prevalence of Blindness and Visual Impairment in Nigeria: The National Blindness and Visual Impairment Study. Investigative Ophthalmology & Visual Science, 50, 2033-2039. https://doi.org/10.1167/iovs.08-3133
[3]
Ashaye, A. (2010) Glaucoma Blindness: Facts, Fancies and Fables. 12th Faculty Lecture, Faculty of Ophthalmology, National Postgraduate Medical College of Nigeria, Ibadan, 1-48.
[4]
Allingham, R.R., Liu, Y. and Rhee, D.J. (2009) The Genetics of Primary Open Angle Glaucoma: A Review. Experimental Eye Research, 88, 837-844. https://doi.org/10.1016/j.exer.2008.11.003
[5]
Bowling, B. (2016) Kanski’s Clinical Ophthalmology: A Systemic Approach. 8th Edition, Elsevier, Amsterdam, 306-366.
[6]
Fan, B.J. and Wiggs, J.L. (2010) Glaucoma: Genes, Phenotypes, and New Directions for Therapy. Journal of Clinical Investigation, 120, 3064-3072. https://doi.org/10.1172/JCI43085
[7]
Fingert, J.H., Robin, A.L., Stone, J.L., Roos, B., Davis, L.K., Scheetz, T.A., et al. (2011) Copy Number Variations on Chromosom 12q14 Patients with Normal Tension Glaucoma. Human Molecular Genetics, 20, 2482-2494. https://doi.org/10.1093/hmg/ddr123
[8]
Monemi, S., Spaeth, G., DaSilva, A., et al. (2005) Identification of a Novel Adult-Onset Primary Open-Angle Glaucoma (POAG) Gene on 5q22.1. Human Molecular Genetics, 14, 725-733. https://doi.org/10.1093/hmg/ddi068
[9]
Liu, Y., Hauser, M.A., Akafo, S.K, Qin, X., Miura, S., Gibson, J.R., Allingham, R.R., et al. (2013) Investigation of Known Genetic Risk Factors for Primary Open Angle Glaucoma in Two Populations of African Ancestry. Investigative Ophthalmology & Visual Science, 54, 6248-6254. https://doi.org/10.1167/iovs.13-12779
[10]
Stone, E.M., Aldave, A.J., Drack, A.V., et al. (2012) Recommendations for Genetic Testing of Inherited Eye Diseases: Report of the American Academy of Ophthalmology Task Force on Genetic Testing. Ophthalmology, 119, 2408-2410. https://doi.org/10.1016/j.ophtha.2012.05.047
[11]
Kwon, Y.H., Fingert, J.H., Kuehn, M.H. and Alward, W.L. (2009) Primary Open-Angle Glaucoma. New England Journal of Medicine, 360, 1113-1124. https://doi.org/10.1056/NEJMra0804630
[12]
Lwanga, S.K., Lemeshow, S. and WHO (1991) Sample Size Determination in Health Studies: A Practical Manual. World Health Organization, Geneva, 10-28.
All Good Science Starts with Sample Collection. https://www.zymoresearch.com
[16]
Allen, K.F., Gaier, E.D. and Wiggs, J.L. (2015) Genetics of Primary Inherited Disorders of the Optic Nerve: Clinical Applications. Cold Spring Harbor Perspectives in Medicine, 5, Article ID: a017277. https://doi.org/10.1101/cshperspect.a017277
[17]
Kyari, F., Entekume, G., Rabiu, M., Spry, P., Wormald, R., Nolan, W., Murthy, G.V.S. and Gilbert, C.E. (2015) A Population-Based Survey of the Prevalence and Types of Glaucoma in Nigeria: Results from the Nigeria National Blindness and Visual Impairment Survey. BMC Ophthalmology, 15, Article No. 176. https://doi.org/10.1186/s12886-015-0160-6
[18]
Awoyesuku, E.A. and Ejimadu, C.S. (2012) Visual Disability in Newly Diagnosed Primary Open Angle Glaucoma (POAG) Patients in a Tertiary Hospital in Nigeria. Nigeria Journal of Medicine, 21, 78-80.
[19]
Murdoch, I.E., Cousens, S.N., Babalola, O.E., Yang, Y.F., Abiose, A. and Jones, B.R. (2001) Glaucoma Prevalence May Not Be Uniformly High in All Black Population. African Journal of Medicine and Medical Sciences, 30, 337-3379.
[20]
Adekoya, B.J., Shah, S.P., Onakoya, A.O. and Ayanniyi, A.A. (2014) Glaucoma in Southwest Nigeria: Clinical Presentation, Family History and Perceptions. International Ophthalmology, 34, 1027-1036. https://doi.org/10.1007/s10792-014-9903-2
[21]
Leske, M.C., Wu, S.-Y., Hennis, A., Honkanen, R. and Nemesure, B. (2008) Risk Factors for Incident Open-Angle Glaucoma: The Barbados Eye Studies. Ophthalmology, 115, 85-93. https://doi.org/10.1016/j.ophtha.2007.03.017
[22]
Challa, P., Herndon, L.W., Hauser, M.A., Broomer, B.W., Pericak-Vance, M.A., Ababio-Danso, B. and Allingham, R.R. (2002) Prevalence of Myocilin Mutations in Adults with Primary Open-angle Glaucoma in Ghana, West Africa. Journal of Glaucoma, 5, 416-420. https://doi.org/10.1097/00061198-200210000-00008
[23]
Fingert, J.H., Héon, E., Liebmann, J.M., Yamamoto, T., Craig, J.E., Rait, J., Kawase, K., Hoh, S.-T., Buys, Y.M., Dickinson, J., Hockey, R.R., Williams-Lyn, D., Trope, G., Kitazawa, Y., Ritch, R., Mackey, D.A., Alward, W.L.M., Sheffield, V.C. and Stone, E.M. (1999) Analysis of Myocilin Mutations in 1703 Glaucoma Patients from Five Different Populations. Human Molecular Genetics, 8, 899-905. https://doi.org/10.1093/hmg/8.5.899
[24]
Ennis, S., Gibson, J., Griffiths, H., Bunyan, D., Cree, A.J., Self, J., MacLeod, A. and Lotery, A. (2010) Prevalence of Myocilin Gene Mutations in a Novel UK Cohort of POAG Patients. Eye, 24, 328-333. https://doi.org/10.1038/eye.2009.73