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Mohammad Shamsul Ola

Professor

Faculty

كلية العلوم
Research Group of Diabetic Retinopathy and Biochemical Toxicology and Nanobiochemistry; 2A 61, PO Box 2455, Building 5, Department of Biochemistry, College of Science, King Saud University, Riyadh
publication
Journal Article
2023

Agitation does not induce fibrillation in reduced hen egg-white lysozyme at physiological temperature and pH.

Several proteins and peptides tend to form an amyloid fibril, causing a range of unrelated diseases, from neurodegenerative to certain types of cancer. In the native state, these proteins are folded and soluble. However, these proteins acquired β-sheet amyloid fibril due to unfolding and aggregation. The conversion mechanism from well-folded soluble into amorphous or amyloid fibril is not well understood yet. Here, we induced unfolding and aggregation of hen egg-white lysozyme (HEWL) by reducing agent dithiothreitol and applied mechanical sheering force by constant shaking (1000 rpm) on the thermostat for 7 days. Our turbidity results showed that reduced HEWL rapidly formed aggregates, and a plateau was attained in nearly 5 h of incubation in both shaking and non-shaking conditions. The turbidity was lower in the shaking condition than in the non-shaking condition. The thioflavin T binding and transmission electron micrographs showed that reduced HEWL formed amorphous aggregates in both conditions. Far-UV circular dichroism results showed that reduced HEWL lost nearly all alpha-helical structure, and β-sheet secondary structure was not formed in both conditions. All the spectroscopic and microscopic results showed that reduced HEWL formed amorphous aggregates under both conditions.

Publisher Name
Wiley
Publishing City
New York
Volume Number
doi: 10.1002/jmr.3009
Magazine \ Newspaper
J. Mol. Recognit
more of publication
publications

Glucose, the predominant carbohydrate in the human body, initiates nonenzymatic reactions in hyperglycemia, potentially leading to adverse biochemical interactions. This study investigates the…

by Additiya Paramanya, Abeeb Oyesiji Abiodun, Mohammad Shamsul Ola, Ahmad Ali
2024
Published in:
Wiley
publications

Investigations into cholinesterase inhibition have received attention from researchers in recent years for the treatment of Alzheimer’s disease. Cholinesterase enzymes, namely,…

by Sabrina Lekmine, Ouided Benslama, Hichem Tahraoui, Mohammad Shamsul Ola, Aicha Laouani, Kenza Kadi, Antonio Ignacio Martín-García, Ahmad Ali
2024
Published in:
MDPI
publications

Objective

by Archana Chaudhary, Nandani kumari, Manish kumar, Md. Margoob Ahmad, Mohammad Shamsul Ola & Rizwanul Haque
2024
Published in:
Springer