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1.
Arch Biochem Biophys ; 379(1): 71-7, 2000 Jul 01.
Article in English | MEDLINE | ID: mdl-10864443

ABSTRACT

Lysyl oxidase activity is critical for the assembly and cross-linking of extracellular matrix proteins, such as collagen and elastin. Moreover, lysyl oxidase activity is sensitive to changes in copper status and genetic perturbations in copper transport, e.g., mutations in the P-type ATPase gene, ATP7A, associated with cellular copper transport. Lysyl oxidase may also serve as a vehicle for copper transport from extracellular matrix cells. Herein, we demonstrate that sufficient lysyl oxidase functional activity is present in the rat embryo at gestation day (GD) 9 to be detected in conventional enzyme assays. Estimation of embryonic lysyl oxidase functional activity, however, required partial purification in order to remove inhibitors. From GD 9 to GD 15, lysyl oxidase activity was relatively constant when expressed per unit of protein or DNA. In contrast, the steady-state levels of lysyl oxidase and ATP7A mRNA, measured by RT-PCR and expressed relative to total RNA and cyclophilin mRNA, increased approximately fourfold from GD 9 to 15. The pattern of temporal expression for ATP7A was consistent with its possible role in copper delivery to lysyl oxidase.


Subject(s)
Adenosine Triphosphatases/genetics , Carrier Proteins/genetics , Cation Transport Proteins , Embryo, Mammalian/enzymology , Gene Expression Regulation, Developmental/genetics , Protein-Lysine 6-Oxidase/genetics , Recombinant Fusion Proteins , Animals , Biological Transport , Copper/metabolism , Copper-Transporting ATPases , Embryonic and Fetal Development , Gene Expression Regulation, Enzymologic , Gestational Age , Peptidylprolyl Isomerase/genetics , RNA, Messenger/metabolism , Rats , Rats, Sprague-Dawley , Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization
2.
J Nutr ; 129(12): 2143-6, 1999 Dec.
Article in English | MEDLINE | ID: mdl-10573541

ABSTRACT

Lysyl oxidase (EC 1.4.3.13), a cuproenzyme, can account for 10-30% of the copper present in connective tissue. Herein, we assess the extent to which tissue copper concentrations and lysyl oxidase activity are related because the functional activity of lysyl oxidase and the copper content of chick tendon are both related to dietary copper intake. Chicks (1-d old) were fed diets (basal copper concentration, 0.4 microg/g diet) to which copper was added from 0 to 16 microg/g diet. Liver and plasma copper levels tended to normalize in chickens that consumed from 1 to 4 microg copper/g of diet, whereas tendon copper concentrations suggested an unusual accumulation of copper in chickens that consumed 16 microg copper/g diet. The molecular weight of lysyl oxidase was also estimated using matrix-assisted laser desorption ionization/time-of-flight/mass spectrometry (MALDI/TOF/MS). A novel aspect of these measurements was estimation of protein mass directly from the surface of chick tendons and aortae. Whether copper deficiency (0 added copper) or copper supplementation (16 microg copper/g of diet) caused changes in the molecular weight of protein(s) in tendon corresponding to lysyl oxidase was addressed. The average molecular weight of the peak corresponding to lysyl oxidase in tendon and aorta from copper-deficient birds was 28,386 Da +/- 86, whereas the average molecular weight of corresponding protein in tendon from copper-supplemented birds was 28,639 Da +/- 122. We propose that the shift in molecular weight is due in part to copper binding and the formation of lysyl tyrosyl quinone, the cofactor at the active site of lysyl oxidase.


Subject(s)
Copper/administration & dosage , Protein-Lysine 6-Oxidase/metabolism , Tendons/enzymology , Animals , Aorta/enzymology , Chickens , Copper/deficiency , Copper/pharmacology , Diet , Dose-Response Relationship, Drug , Enzyme Activation , Male , Molecular Weight , Protein-Lysine 6-Oxidase/chemistry , Protein-Lysine 6-Oxidase/drug effects
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