2020
DOI: 10.6026/97320630016900
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Salt-Bridges in the Microenvironment of Stable Protein Structures

Abstract: Salt-bridges (sb) play an important role in the folding and stability of proteins. This is deduced from the evaluation of net energy in the microenvironments (ME, residues that are 4Å away from positive and negative partners of salt-bridge and interact with them). ME’s act as a determinant of net-energy due to the intrinsic features by the sequence. The stability of extremophilic proteins is due to the presence of favorable residues at the ME without any unfavorable residues. We studied a dataset of four struc… Show more

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Cited by 4 publications
(5 citation statements)
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References 35 publications
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“…It needs to be mentioned here that, in order to have a prominent global effect, ME-population needs to have the most adverse candidates. Compared to other studies 53 HuP's ME-population does not have such a candidate in it, and thus, the global effect, although favorable, is less prominent. Although the replacement of our ME-residue stabilizes the unstable salt-bridge, the limitations of the in-silico method need to be kept in mind here.…”
Section: Discussionmentioning
confidence: 56%
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“…It needs to be mentioned here that, in order to have a prominent global effect, ME-population needs to have the most adverse candidates. Compared to other studies 53 HuP's ME-population does not have such a candidate in it, and thus, the global effect, although favorable, is less prominent. Although the replacement of our ME-residue stabilizes the unstable salt-bridge, the limitations of the in-silico method need to be kept in mind here.…”
Section: Discussionmentioning
confidence: 56%
“…Thus, for a given salt-bridge, preparation of five different mutated PDB structures and nine different APBS runs were required to obtain the component energy terms 39 , 63 – 65 . A higher version of the earlier programs 63 – 65 was used for automated extraction of the component and hence the net energy terms 53 .…”
Section: Methodsmentioning
confidence: 99%
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