Characterization, modeling, and anticancer activity of L.arginase production from marine Bacillus licheniformis OF2

Author:

Selim Manal S.,Mounier Marwa M.,Abdelhamid Sayeda A.,Hamed Ahmed Abdelghani,Abo Elsoud Mostafa M.,Mohamed Sahar S.

Abstract

Abstract Background L-arginase, is a powerful anticancer that hydrolyzes L-arginine to L-ornithine and urea. This enzyme is widely distributed and expressed in organisms like plants, fungi, however very scarce from bacteria. Our study is based on isolating, purifying, and screening the marine bacteria that can produce arginase. Results The highest arginase producing bacteria will be identified by using microbiological and molecular biology methods as Bacillus licheniformis OF2. Characterization of arginase is the objective of this study. The activity of enzyme was screened, and estimated beside partial sequencing of arginase gene was analyzed. In silico homology modeling was applied to generate the protein's 3D structure, and COACH and COFACTOR were applied to determine the protein's binding sites and biological annotations based on the I-TASSER structure prediction. The purified enzyme was undergone an in vitro anticancer test. Conclusions L-arginase demonstrated more strong anti-cancer cells with an IC50 of 21.4 ug/ml in a dose-dependent manner. L-arginase underwent another investigation for its impact on the caspase 7 and BCL2 family of proteins (BCL2, Bax, and Bax/Bcl2). Through cell arrest in the G1/S phase, L-arginase signals the apoptotic cascade, which is supported by a flow cytometry analysis of cell cycle phases.

Funder

National Research Centre Egypt

Publisher

Springer Science and Business Media LLC

Reference80 articles.

1. Selim MSM, Mohamed SS, Abdelhamid SA, Hamed AA. Characterization and purification of alkaline protease from novel Bacillus subtilus MS1 for detergent additives. Egypt J Chem. 2023;66(3):281–8.

2. Abdelhamid SA, El-Shatoury EH, Asker MS, Abd-El-Aal SK, Mohamed SS. Hydrolysis of cellulose rich agricultural waste using two potent local bacterial isolates. Proc Natl Acad Sci, India Section B: Biol Sci. 2022;93(1):225–34.

3. Hoondal G, Tiwari R, Tewari R, Dahiya N, Beg Q. Microbial alkaline pectinases and their industrial applications: a review. Appl Microbiol Biotechnol. 2002;59(4):409–18.

4. Dalvi P, Anthappan P. Amylase and pectinase from single source for simultaneous desizing and scouring. 2007.

5. Clemente GS, van Waarde A, Antunes IF, Elsinga PH. Arginase as a potential biomarker of disease progression: a molecular imaging perspective. Int J of Mol Sci. 2020;21(15):5291.

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