Matches in SemOpenAlex for { <https://semopenalex.org/work/W2000247209> ?p ?o ?g. }
- W2000247209 endingPage "936" @default.
- W2000247209 startingPage "925" @default.
- W2000247209 abstract "Abstract Protein–protein association is a pH‐dependent process and thus the binding affinity depends on the local pH. In vivo the association occurs in a particular cellular compartment, where the individual monomers are supposed to meet and form a complex. Since the monomers and the complex exist in the same micro environment, it is plausible that they coevolved toward its properties, in particular, toward the characteristic subcellular pH. Here we show that the pH at which the monomers are most stable (pH‐optimum) or the pH at which stability is almost pH‐independent (pH‐flat) of monomers are correlated with the pH‐optimum of maximal affinity (pH‐optimum of binding) or pH interval at which affinity is almost pH‐independent (pH‐flat of binding) of the complexes made of the corresponding monomers. The analysis of interfacial properties of protein complexes demonstrates that pH‐dependent properties can be roughly estimated using the interface charge alone. In addition, we introduce a parameter beta, proportional to the square root of the absolute product of the net charges of monomers, and show that protein complexes characterized with small or very large beta tend to have neutral pH‐optimum. Further more, protein complexes made of monomers carrying the same polarity net charge at neutral pH have either very low or very high pH‐optimum of binding. These findings are used to propose empirical rule for predicting pH‐optimum of binding provided that the amino acid compositions of the corresponding monomers are available. Proteins 2011. © 2010 Wiley‐Liss, Inc." @default.
- W2000247209 created "2016-06-24" @default.
- W2000247209 creator A5045839072 @default.
- W2000247209 creator A5075727451 @default.
- W2000247209 creator A5077558876 @default.
- W2000247209 date "2010-12-22" @default.
- W2000247209 modified "2023-10-17" @default.
- W2000247209 title "<i>In silico</i> modeling of pH-optimum of protein-protein binding" @default.
- W2000247209 cites W1605399271 @default.
- W2000247209 cites W1918940018 @default.
- W2000247209 cites W1933777541 @default.
- W2000247209 cites W1970343235 @default.
- W2000247209 cites W1971679196 @default.
- W2000247209 cites W1976175226 @default.
- W2000247209 cites W1976548998 @default.
- W2000247209 cites W1977496028 @default.
- W2000247209 cites W1977811526 @default.
- W2000247209 cites W1979754659 @default.
- W2000247209 cites W1983853935 @default.
- W2000247209 cites W1985724808 @default.
- W2000247209 cites W1987753923 @default.
- W2000247209 cites W1988152696 @default.
- W2000247209 cites W1990198702 @default.
- W2000247209 cites W1990287185 @default.
- W2000247209 cites W1997380288 @default.
- W2000247209 cites W1998486888 @default.
- W2000247209 cites W1998645872 @default.
- W2000247209 cites W1998649776 @default.
- W2000247209 cites W1998800050 @default.
- W2000247209 cites W2004145462 @default.
- W2000247209 cites W2004582325 @default.
- W2000247209 cites W2006975013 @default.
- W2000247209 cites W2010422957 @default.
- W2000247209 cites W2014042350 @default.
- W2000247209 cites W2015649075 @default.
- W2000247209 cites W2025878809 @default.
- W2000247209 cites W2029712458 @default.
- W2000247209 cites W2031772330 @default.
- W2000247209 cites W2032590393 @default.
- W2000247209 cites W2033014002 @default.
- W2000247209 cites W2033785784 @default.
- W2000247209 cites W2036390167 @default.
- W2000247209 cites W2039079135 @default.
- W2000247209 cites W2044098466 @default.
- W2000247209 cites W2052858061 @default.
- W2000247209 cites W2053475844 @default.
- W2000247209 cites W2053649363 @default.
- W2000247209 cites W2054698000 @default.
- W2000247209 cites W2057849368 @default.
- W2000247209 cites W2059492700 @default.
- W2000247209 cites W2062241319 @default.
- W2000247209 cites W2065304353 @default.
- W2000247209 cites W2065939630 @default.
- W2000247209 cites W2067222980 @default.
- W2000247209 cites W2067827057 @default.
- W2000247209 cites W2069134931 @default.
- W2000247209 cites W2073275733 @default.
- W2000247209 cites W2074110604 @default.
- W2000247209 cites W2076790509 @default.
- W2000247209 cites W2078302553 @default.
- W2000247209 cites W2080002005 @default.
- W2000247209 cites W2084135361 @default.
- W2000247209 cites W2084949662 @default.
- W2000247209 cites W2093756031 @default.
- W2000247209 cites W2102640727 @default.
- W2000247209 cites W2104973681 @default.
- W2000247209 cites W2105438341 @default.
- W2000247209 cites W2106222602 @default.
- W2000247209 cites W2110068166 @default.
- W2000247209 cites W2115156437 @default.
- W2000247209 cites W2115642705 @default.
- W2000247209 cites W2119491918 @default.
- W2000247209 cites W2121166097 @default.
- W2000247209 cites W2124904677 @default.
- W2000247209 cites W2126311442 @default.
- W2000247209 cites W2128276810 @default.
- W2000247209 cites W2129700237 @default.
- W2000247209 cites W2130675570 @default.
- W2000247209 cites W2132160618 @default.
- W2000247209 cites W2152486318 @default.
- W2000247209 cites W2164860689 @default.
- W2000247209 cites W2212681463 @default.
- W2000247209 cites W2287623213 @default.
- W2000247209 cites W23604822 @default.
- W2000247209 cites W4321429199 @default.
- W2000247209 doi "https://doi.org/10.1002/prot.22931" @default.
- W2000247209 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/3213863" @default.
- W2000247209 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/21287623" @default.
- W2000247209 hasPublicationYear "2010" @default.
- W2000247209 type Work @default.
- W2000247209 sameAs 2000247209 @default.
- W2000247209 citedByCount "47" @default.
- W2000247209 countsByYear W20002472092012 @default.
- W2000247209 countsByYear W20002472092013 @default.
- W2000247209 countsByYear W20002472092014 @default.
- W2000247209 countsByYear W20002472092015 @default.
- W2000247209 countsByYear W20002472092016 @default.
- W2000247209 countsByYear W20002472092017 @default.