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Arginine side chain interactions and the role of arginine as a gating charge carrier in voltage sensitive ion channels
CT. Armstrong, PE. Mason, JL. Anderson, CE. Dempsey,
Jazyk angličtina Země Anglie, Velká Británie
Typ dokumentu časopisecké články, práce podpořená grantem
NLK
Directory of Open Access Journals
od 2011
Free Medical Journals
od 2011
Nature Open Access
od 2011-12-01
PubMed Central
od 2011
Europe PubMed Central
od 2011
ProQuest Central
od 2011-01-01
Open Access Digital Library
od 2011-01-01
Open Access Digital Library
od 2011-01-01
Health & Medicine (ProQuest)
od 2011-01-01
ROAD: Directory of Open Access Scholarly Resources
od 2011
PubMed
26899474
DOI
10.1038/srep21759
Knihovny.cz E-zdroje
- MeSH
- arginin chemie MeSH
- databáze proteinů MeSH
- draslíkový kanál ERG1 chemie MeSH
- gating iontového kanálu MeSH
- guanidin chemie MeSH
- hydrofobní a hydrofilní interakce MeSH
- lidé MeSH
- lysin chemie MeSH
- protein - isoformy chemie MeSH
- sekvence aminokyselin MeSH
- simulace molekulární dynamiky * MeSH
- statická elektřina MeSH
- strukturní homologie proteinů MeSH
- voda chemie MeSH
- vodíková vazba MeSH
- vztahy mezi strukturou a aktivitou MeSH
- zvířata MeSH
- Check Tag
- lidé MeSH
- zvířata MeSH
- Publikační typ
- časopisecké články MeSH
- práce podpořená grantem MeSH
Gating charges in voltage-sensing domains (VSD) of voltage-sensitive ion channels and enzymes are carried on arginine side chains rather than lysine. This arginine preference may result from the unique hydration properties of the side chain guanidinium group which facilitates its movement through a hydrophobic plug that seals the center of the VSD, as suggested by molecular dynamics simulations. To test for side chain interactions implicit in this model we inspected interactions of the side chains of arginine and lysine with each of the 19 non-glycine amino acids in proteins in the protein data bank. The arginine guanidinium interacts with non-polar aromatic and aliphatic side chains above and below the guanidinium plane while hydrogen bonding with polar side chains is restricted to in-plane positions. In contrast, non-polar side chains interact largely with the aliphatic part of the lysine side chain. The hydration properties of arginine and lysine are strongly reflected in their respective interactions with non-polar and polar side chains as observed in protein structures and in molecular dynamics simulations, and likely underlie the preference for arginine as a mobile charge carrier in VSD.
Citace poskytuje Crossref.org
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