» Articles » PMID: 1318540

Developmental Regulation of the Sarcoplasmic Reticulum Calcium Pump in the Rabbit Heart

Overview
Journal Pediatr Res
Specialties Biology
Pediatrics
Date 1992 May 1
PMID 1318540
Citations 7
Authors
Affiliations
Soon will be listed here.
Abstract

Previous studies have demonstrated that myocardial function changes during mammalian perinatal development. The purpose of this study was to evaluate the subcellular basis underlying the slower relaxation in the developing heart by examining perinatal changes in sarcoplasmic reticulum (SR) function, and in SR Ca2+ pump protein and mRNA abundance. We measured Ca2+ uptake and ATPase rates in isolated fetal, newborn, and adult rabbit cardiac SR membranes. In fetal and adult SR membranes, we estimated the active Ca2+ pump protein content by measuring the steady state Ca(2+)-dependent phosphoenzyme content; the total Ca2+ pump protein content was estimated by Western analysis of the immunoreactive Ca2+ pumps. We isolated RNA from fetal and adult hearts and estimated the SR Ca2+ pump mRNA content by Northern analysis. Ca2+ uptake and ATPase rates were significantly lower in the fetal and newborn SR membranes compared with the adult. The contents of active and total Ca2+ pump protein and of Ca2+ pump mRNA were 52-63% lower in the fetus than in the adult. These results indicate that a great deal of the slower sarcoplasmic reticulum Ca2+ uptake and ATPase rates in the fetal rabbit heart can be related to lower Ca2+ pump mRNA and protein contents. It is evident that transcriptional and/or posttranscriptional regulation of the SR Ca2+ pump may form an important part of the subcellular basis of the perinatal change in mammalian cardiac relaxation.

Citing Articles

Force frequency relationship of the human ventricle increases during early postnatal development.

Wiegerinck R, Cojoc A, Zeidenweber C, Ding G, Shen M, Joyner R Pediatr Res. 2009; 65(4):414-9.

PMID: 19127223 PMC: 2788428. DOI: 10.1203/PDR.0b013e318199093c.


Expression of protein phosphatases during postnatal development of rabbit heart.

Kumar R, Joyner R Mol Cell Biochem. 2003; 245(1-2):91-8.

PMID: 12708748 DOI: 10.1023/a:1022865710747.


Intracardiac pressures in the human fetus.

Johnson P, Maxwell D, Tynan M, Allan L Heart. 2000; 84(1):59-63.

PMID: 10862590 PMC: 1729389. DOI: 10.1136/heart.84.1.59.


Early postnatal changes in sarcoplasmic reticulum calcium transport function in spontaneously hypertensive rats.

Freestone N, Singh J, Krause E, Vetter R Mol Cell Biochem. 1996; 163-164:57-66.

PMID: 8974040 DOI: 10.1007/BF00408641.


G proteins, adenylyl cyclase and related phosphoproteins in the developing rat heart.

Bartel S, Karczewski P, Krause E Mol Cell Biochem. 1996; 163-164:31-8.

PMID: 8974037 DOI: 10.1007/BF00408638.