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Lysyl oxidase: Properties, specificity, and biological roles inside and outside of the cell

Journal of Cellular Biochemistry · 2002 · Vol. 88(4) · pp. 660–672
Herbert M. KaganWande Li

Abstract

Lysyl oxidase (LO) plays a critical role in the formation and repair of the extracellular matrix (ECM) by oxidizing lysine residues in elastin and collagen, thereby initiating the formation of covalent crosslinkages which stabilize these fibrous proteins. Its catalytic activity depends upon both its copper cofactor and a unique carbonyl cofactor and has been shown to extend to a variety of basic globular proteins, including histone H1. Although the three-dimensional structure of LO has yet to be determined, the present treatise offers hypotheses based upon its primary sequence, which may underlie the prominent electrostatic component of its unusual substrate specificity as well as the catalysis-suppressing function of the propeptide domain of prolysyl oxidase. Recent studies have demonstrated that LO appears to function within the cell in a manner, which strongly modifies cellular activity. Newly discovered LO-like proteins also likely play unique roles in biology.

Microbial metabolism and enzyme functionPorphyrin Metabolism and DisordersAlcohol Consumption and Health EffectsLysyl oxidaseElastinExtracellular matrixLysineBiochemistryChemistryCofactorCovalent bondFunction (biology)Oxidase test

MeSH terms

Amino Acid OxidoreductasesAmino Acid SequenceAnimalsCatalysisCattleCollagenElastinExtracellular MatrixForecastingHumansProtein-Lysine 6-OxidaseMolecular Sequence DataStructure-Activity RelationshipSubstrate SpecificityTumor Suppressor Proteins

Funding

  • National Institutes of Health
Citations
933
FWCI
4.68
field-weighted impact
References
57
Percentile
96%
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Citations per year
References
Atherosclerosis — An Inflammatory Disease
New England Journal of Medicine · 1999 · 21,632 citations
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