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Ramachandran analysis of conserved glycyl residues in homologous proteins of known structure
Authors:Balasubramanian Lakshmi  Chandrasekaran Sinduja  Govind Archunan  Narayanaswamy Srinivasan
Affiliation:1. Department of Animal Science, Bharathidasan University, , Tiruchirappalli, 620024 Tamil Nadu, India;2. Molecular Biophysics Unit, Indian Institute of Science, , Bangalore, 560012 Karnataka, India;3. School of Chemical and Biotechnology, Shanmuga Arts, Science, Technology and Research Academy, SASTRA University, , Thanjavur, 613401 Tamil Nadu, India
Abstract:High conservation of glycyl residues in homologous proteins is fairly frequent. It is commonly understood that glycine tends to be highly conserved either because of its unique Ramachandran angles or to avoid steric clash that would arise with a larger side chain. Using a database of aligned 3D structures of homologous proteins we identified conserved Gly in 288 alignment positions from 85 families. Ninety‐six of these alignment positions correspond to conserved Gly residue with (φ, ψ) values allowed for non‐glycyl residues. Reasons for this observation were investigated by in‐silico mutation of these glycyl residues to Ala. We found in 94% of the cases a short contact exists between the Cβ atom of the introduced Ala with the atoms which are often distant in the primary structure. This suggests the lack of space even for a short side chain thereby explaining high conservation of glycyl residues even when they adopt (φ, ψ) values allowed for Ala. In 189 alignment positions, the conserved glycyl residues adopt (φ, ψ) values which are disallowed for Ala. In‐silico mutation of these Gly residues to Ala almost always results in steric hindrance involving Cβ atom of Ala as one would expect by comparing Ramachandran maps for Ala and Gly. Rare occurrence of the disallowed glycyl conformations even in ultrahigh resolution protein structures are accompanied by short contacts in the crystal structures and such disallowed conformations are not conserved in the homologues. These observations raise the doubt on the accuracy of such glycyl conformations in proteins.
Keywords:glycyl conformation  homologous proteins  Ramachandran map  steric hindrance
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