MAMMALIAN ADAPTATION TO EXTRAUTERINE ENVIRONMENT - MITOCHONDRIAL FUNCTIONAL IMPAIRMENT CAUSED BY PREMATURITY

被引:21
作者
VALCARCE, C [1 ]
IZQUIERDO, JM [1 ]
CHAMORRO, M [1 ]
CUEZVA, JM [1 ]
机构
[1] UNIV AUTONOMA MADRID, CSIC, CTR BIOL MOLEC, DEPT BIOL MOLEC, E-28049 MADRID, SPAIN
关键词
D O I
10.1042/bj3030855
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In this paper we report that, compared with term rat neonates, both mitochondrial content and function are diminished in liver of preterm neonates (delivered 24 h before full term) compromising cellular energy provision in the postnatal period. In addition, there is a parallel reduction in the content of mRNAs encoding mitochondrial proteins in preterm rats. Also, efficient oxidative phosphorylation is not attained in these pups until 3 h after birth. Although isolated liver mitochondria from preterm neonates show a two-fold increase in F-1-ATPase beta-subunit and cytochrome c oxidase activity 1 h after birth, the abnormal coupling efficiency between respiration and oxidative phosphorylation (ADP/O ratio) is due to maintenance of high H+-leakage values in the inner mitochondrial membrane. Postnatal reduction of the H+ leak occurs concomitantly with an increase in intramitochondrial adenine nucleotide concentration. Accumulation of adenine nucleotides in preterm and term liver mitochondria parallels the postnatal increase in total liver adenine nucleotides. Delayed postnatal induction of adenine biosynthesis most likely accounts for the lower adenine nucleotide pool in the liver of preterm neonates. The delayed postnatal accumulation of adenine nucleotides in mitochondria is thus responsible for the impairment in oxidative phosphorylation displayed by organelles of the preterm liver.
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收藏
页码:855 / 862
页数:8
相关论文
共 49 条
[1]   POSTNATAL-DEVELOPMENT OF RAT-LIVER MITOCHONDRIA - STATE-3 RESPIRATION, ADENINE-NUCLEOTIDE TRANSLOCASE ACTIVITY, AND THE NET ACCUMULATION OF ADENINE-NUCLEOTIDES [J].
APRILLE, JR ;
ASIMAKIS, GK .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1980, 201 (02) :564-575
[2]   MECHANISM AND REGULATION OF THE MITOCHONDRIAL ATP-MG/P-I CARRIER [J].
APRILLE, JR .
JOURNAL OF BIOENERGETICS AND BIOMEMBRANES, 1993, 25 (05) :473-481
[3]  
ARIZMENDI C, 1984, IRCS MED SCI-BIOCHEM, V12, P592
[4]  
AUSTIN J, 1984, J BIOL CHEM, V259, P154
[5]   EFFECTS OF ATP ON VARIOUS STEPS CONTROLLING THE RATE OF OXIDATIVE-PHOSPHORYLATION IN NEWBORN RAT-LIVER MITOCHONDRIA [J].
BAGGETTO, L ;
GAUTHERON, DC ;
GODINOT, C .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1984, 232 (02) :670-678
[6]   POSTTRANSCRIPTIONAL ANALYSIS OF RAT MITOCHONDRIAL D-3-HYDROXYBUTYRATE DEHYDROGENASE CONTROL THROUGH DEVELOPMENT AND PHYSIOLOGICAL STAGES [J].
BAILLY, A ;
LONE, YC ;
LATRUFFE, N .
BIOLOGY OF THE CELL, 1991, 73 (2-3) :121-129
[7]   DENOVO PURINE SYNTHESIS IN SKELETAL-MUSCLE [J].
BROSH, S ;
BOER, P ;
ZOREFSHANI, E ;
SPERLING, O .
BIOCHIMICA ET BIOPHYSICA ACTA, 1982, 714 (01) :181-183
[8]  
BURCH HB, 1963, J BIOL CHEM, V238, P2267
[9]  
CHAU CMA, 1992, J BIOL CHEM, V267, P6999
[10]  
CHITRA CI, 1985, DIABETOLOGIA, V28, P148