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Al-Madhagi, H. A.

Publications and source records attributed to Al-Madhagi, H. A..

2 recordsLinked to original sources

Generating an Efficient Arginase Variant for Medical and Industrial Uses: in Silico Engineering

Human arginase is a multifaceted enzyme that can be utilised for various medical and industrial applications, including as a replacement therapy for enzyme-deficient patients and for the industrial production of ornithine. However, no report has explored the in-silico engineering of this novel enzyme. The crystal structure of human arginase 1 was downloaded from the protein databank, and its quality was checked prior to further analysis. CUPSAT and DeepDDG webservers were then employed to nominate the most stable variants, which were prepared by the UCSF Chimera v1.16 modelling system and refined by the GalaxyRefine tool. Docking (i.e., to reference substrate and inhibitor), stability confirmation and dynamics simulations were conducted for all proposed variants, compared to the wild-type version of the enzyme. G119L was the best mutant in all the mentioned aspects, which was afterwards cloned in silico as a final step for the experimental testing thereof. Accordingly, G119L is found to be a valuable arginase mutant that deserves experimental validation to be employed for medical and industrial purposes.

bioinformatics↗

Finding Consensus miRNAs Silencing KLF1 Expression as A Promising Therapeutic Option of Sickle Cell Anemia

1Sickle cell anemia (SCA) is the almost the severest hemoglobinopathy known with no cure till date. Patients with SCA has a shorter lifespan and suffer from painful crises and end-organ damages. The goal of this in silico work is to find the consensus miRNAs targeting KLF1 gene, responsible for HbF-to-HbA switching followed by generating the corresponding miRNA sponge for gene silencing purposes. 3 publicly available databases were searched, miRDB, miRWalk and TargetScan. Afterwards, the hybridization examination of the predicted miRNAs was evaluated. Finally, the design of miRNA sponge as a means to target miRNA was performed. In conclusion, hsa-miR-330-5p was the best miRNA targeting KLF1 gene in many aspects and its miRNA sponge sequence was provided.

bioinformatics↗