Please use this identifier to cite or link to this item: http://repositorio.unicamp.br/jspui/handle/REPOSIP/194254
Type: Artigo de periódico
Title: Changes In Calcium Uptake Rate By Rat Cardiac Mitochondria During Postnatal Development.
Author: Bassani, R A
Fagian, M M
Bassani, J W
Vercesi, A E
Abstract: Ca2+ uptake, transmembrane electrical potential (Deltapsim) and oxygen consumption were measured in isolated ventricular mitochondria of rats from 3 days to 5 months of age. Estimated values of ruthenium red-sensitive, succinate-supported maximal rate of Ca2+ uptake (Vmax, expressed as nmol Ca2+/min/mg protein) were higher in neonates and gradually fell during postnatal development (from 435+/-24 at 3-6 days, to 156+/-10 in adults,P<0.001), whereas K0.5 values (approximately 10 microM were not significantly affected by age. Under similar conditions, mitochondria from adults (5 months old) and neonates (4-6 days old) showed comparable state 4 (succinate and alpha-ketoglutarate as substrates) and state 3ADP (alpha-ketoglutarate-supported) respiration rates, as well as Deltapsim values (approximately-150 mV). Respiration-independent Deltapsim and Ca2+ uptake, supported by valinomycin-induced K+ efflux were also investigated at these ages. A transient Deltapsim (approximately -30 mV) was evoked by valinomycin in both neonatal and adult mitochondria. Respiration-independent Ca2+ uptake was also transient, but its initial rate was significantly higher in neonates than in adults (49. 4+/-10.0v 28.0+/-5.7 mmol Ca2+/min/mg protein,P<0.01). These results indicate that Ca2+ uptake capacity of rat cardiac mitochondria is remarkably high just after birth and declines over the first weeks of postnatal life, without change in apparent affinity of the transporter. Increased mitochondrial Ca2+ uptake rate in neonates appears to be related to the uniporter itself, rather than to modification of the driving force of the transport.
Subject: Aging
Animals
Animals, Newborn
Calcium
Carbonyl Cyanide P-trifluoromethoxyphenylhydrazone
Heart
Intracellular Membranes
Kinetics
Membrane Potentials
Mitochondria, Heart
Oxygen Consumption
Rats
Rats, Wistar
Ruthenium Red
Succinates
Rights: fechado
Identifier DOI: 10.1006/jmcc.1998.0762
Address: http://www.ncbi.nlm.nih.gov/pubmed/9799655
Date Issue: 1998
Appears in Collections:Unicamp - Artigos e Outros Documentos

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