Matches in SemOpenAlex for { <https://semopenalex.org/work/W2018691438> ?p ?o ?g. }
- W2018691438 endingPage "881" @default.
- W2018691438 startingPage "874" @default.
- W2018691438 abstract "Polar fish, cold hardy plants, and overwintering insects produce antifreeze proteins (AFPs), which lower the freezing point of solutions noncolligatively and inhibit ice crystal growth. Fish AFPs have been shown to stabilize membranes and cells in vitro during hypothermic storage, probably by interacting with the plasma membrane, but the mechanism of this stabilization has not been clear. We show here that during chilling to nonfreezing temperatures the alpha-helical AFP type I from polar fish inhibits leakage across model membranes containing an unsaturated chloroplast galactolipid. The mechanism involves binding of the AFP to the bilayer, which increases the phase transition temperature of the membranes and alters the molecular packing of the acyl chains. We suggest that this change in acyl chain packing results in the reduced membrane permeability. The data suggest a hydrophobic interaction between the peptide and the bilayer. Further, we suggest that the expression of AFP type I in transgenic plants may be significant for thermal adaptation of chilling-sensitive plants." @default.
- W2018691438 created "2016-06-24" @default.
- W2018691438 creator A5009963375 @default.
- W2018691438 creator A5013536350 @default.
- W2018691438 creator A5021127412 @default.
- W2018691438 creator A5058287037 @default.
- W2018691438 creator A5070190484 @default.
- W2018691438 creator A5071244264 @default.
- W2018691438 creator A5071826139 @default.
- W2018691438 creator A5074869230 @default.
- W2018691438 date "2002-02-01" @default.
- W2018691438 modified "2023-10-13" @default.
- W2018691438 title "A Mechanism for Stabilization of Membranes at Low Temperatures by an Antifreeze Protein" @default.
- W2018691438 cites W1503300581 @default.
- W2018691438 cites W1532992926 @default.
- W2018691438 cites W1555425311 @default.
- W2018691438 cites W1676639987 @default.
- W2018691438 cites W1970928969 @default.
- W2018691438 cites W1971481902 @default.
- W2018691438 cites W1979275471 @default.
- W2018691438 cites W1988377599 @default.
- W2018691438 cites W1993309346 @default.
- W2018691438 cites W1996697666 @default.
- W2018691438 cites W1997837166 @default.
- W2018691438 cites W2003966449 @default.
- W2018691438 cites W2004274697 @default.
- W2018691438 cites W2005612594 @default.
- W2018691438 cites W2008986427 @default.
- W2018691438 cites W2009125044 @default.
- W2018691438 cites W2011392915 @default.
- W2018691438 cites W2014059139 @default.
- W2018691438 cites W2017071790 @default.
- W2018691438 cites W2017784915 @default.
- W2018691438 cites W2017814330 @default.
- W2018691438 cites W2018289835 @default.
- W2018691438 cites W2019251493 @default.
- W2018691438 cites W2024683216 @default.
- W2018691438 cites W2037083949 @default.
- W2018691438 cites W2038377921 @default.
- W2018691438 cites W2044897724 @default.
- W2018691438 cites W2044917527 @default.
- W2018691438 cites W2055776228 @default.
- W2018691438 cites W2063110554 @default.
- W2018691438 cites W2063737329 @default.
- W2018691438 cites W2080279600 @default.
- W2018691438 cites W2083258595 @default.
- W2018691438 cites W2083397422 @default.
- W2018691438 cites W2085183163 @default.
- W2018691438 cites W2093683097 @default.
- W2018691438 cites W2100837269 @default.
- W2018691438 cites W2111829117 @default.
- W2018691438 cites W2115807699 @default.
- W2018691438 cites W2116476799 @default.
- W2018691438 cites W2138414555 @default.
- W2018691438 cites W2162530632 @default.
- W2018691438 cites W2162964643 @default.
- W2018691438 cites W2261886880 @default.
- W2018691438 cites W2305127727 @default.
- W2018691438 cites W4256010680 @default.
- W2018691438 doi "https://doi.org/10.1016/s0006-3495(02)75449-0" @default.
- W2018691438 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/1301896" @default.
- W2018691438 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/11806929" @default.
- W2018691438 hasPublicationYear "2002" @default.
- W2018691438 type Work @default.
- W2018691438 sameAs 2018691438 @default.
- W2018691438 citedByCount "100" @default.
- W2018691438 countsByYear W20186914382012 @default.
- W2018691438 countsByYear W20186914382013 @default.
- W2018691438 countsByYear W20186914382014 @default.
- W2018691438 countsByYear W20186914382015 @default.
- W2018691438 countsByYear W20186914382016 @default.
- W2018691438 countsByYear W20186914382017 @default.
- W2018691438 countsByYear W20186914382018 @default.
- W2018691438 countsByYear W20186914382019 @default.
- W2018691438 countsByYear W20186914382020 @default.
- W2018691438 countsByYear W20186914382021 @default.
- W2018691438 countsByYear W20186914382022 @default.
- W2018691438 countsByYear W20186914382023 @default.
- W2018691438 crossrefType "journal-article" @default.
- W2018691438 hasAuthorship W2018691438A5009963375 @default.
- W2018691438 hasAuthorship W2018691438A5013536350 @default.
- W2018691438 hasAuthorship W2018691438A5021127412 @default.
- W2018691438 hasAuthorship W2018691438A5058287037 @default.
- W2018691438 hasAuthorship W2018691438A5070190484 @default.
- W2018691438 hasAuthorship W2018691438A5071244264 @default.
- W2018691438 hasAuthorship W2018691438A5071826139 @default.
- W2018691438 hasAuthorship W2018691438A5074869230 @default.
- W2018691438 hasBestOaLocation W20186914381 @default.
- W2018691438 hasConcept C120665830 @default.
- W2018691438 hasConcept C121332964 @default.
- W2018691438 hasConcept C125388846 @default.
- W2018691438 hasConcept C12554922 @default.
- W2018691438 hasConcept C1276947 @default.
- W2018691438 hasConcept C141734981 @default.
- W2018691438 hasConcept C178790620 @default.
- W2018691438 hasConcept C185592680 @default.
- W2018691438 hasConcept C192157962 @default.
- W2018691438 hasConcept C2775921128 @default.