Multinational Research Society Publisher

Current Understanding of the Molecular Mechanisms Underlying Glucose-6-Phosphate Dehydrogenase Deficiency and Its Impact on Human Health


Sr No:
Page No: 27-34
Language: English
Authors: Bunza J. M*, Jidda, M. L, Umar A. I., Dallatu M. K., Ngaski A. A, Aliyu K. B., Rufai, M. A., Maryam K., Kwaifa, I. K
Received: 2025-06-22
Accepted: 2025-07-08
Published Date: 2025-07-11
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Abstract:
Glucose-6-phosphate dehydrogenase (G6PD) deficiency is the most common blood disorder, presenting multiple symptoms, including hemolytic anemia. It affects 400 million people worldwide, with more than 160 single mutations reported in G6PD. The most severe mutations (about 70) are classified as class I, leading to more than 90% loss of activity of the wild-type G6PD. The crystal structure of G6PD reveals these mutations are located away from the active site, concentrating around the noncatalytic NADP+-binding site and the dimer interface. However, the molecular mechanisms of class I mutant dysfunction have remained elusive, hindering the development of efficient therapies.
Keywords: Molecular Mechanisms, Impact on Human Health

Journal: MRS Journal of Multidisciplinary Research and Studies
ISSN(Online): 3049-1398
Publisher: MRS Publisher
Frequency: Monthly
Language: English

Current Understanding of the Molecular Mechanisms Underlying Glucose-6-Phosphate Dehydrogenase Deficiency and Its Impact on Human Health