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发育中犬脑高能磷酸化合物的定量及其代谢意义

Quantitation of high energy phosphate compounds and metabolic significance in the developing dog brain.

作者信息

Nioka S, Chance B, Lockard S B, Dobson G P

机构信息

Department of Biochemistry/Biophysics, University of Pennsylvania, Philadelphia 19104.

出版信息

Neurol Res. 1991 Mar;13(1):33-8. doi: 10.1080/01616412.1991.11739962.

DOI:10.1080/01616412.1991.11739962
PMID:1675445
Abstract

The phosphate metabolites, PCr, ATP, ADP and inorganic phosphate (Pi), were quantitated in the brain of the newborn, neonatal, juvenile and adult dog to investigate the potential control mechanisms responsible for increased ATP demands during development. The concentrations of PCr and Pi were measured in vivo by MRS using the enzymatic-measured ATP as the internal standard. Phosphocreatine values increased during development from 2.08 mmol/kg wet weight in the 0-2 day newborn to 5.11 mmol/kg wet weight in the adult brain and paralleled the increases in the total creatine pool (PCr + Cr) from 4.12 to 10.05 mmol/kg wet weight. Brain ATP concentrations increased approximately 40% during postnatal development; however, when expressed as intracellular concentration, no increase in ATP was apparent due to the age-dependent decrease in extracellular space. The Pi concentration, estimated by MRS, increased significantly during postnatal development with a range of 1.78 to 2.52 mmol/kg wet wt, then decreased to 1.97 mmol/kg wet weight at adulthood. In those developmental stages where total Pi was measured enzymatically on freeze-clamped tissue, the NMR visible Pi comprised about 48 to 93% of the total, with the highest percentage being visible in the newborn brain. The intracellular pH decreased from 7.21 in the newborn to 7.10 in the adult. With development, the free ADP concentration, calculated from the components of the creatine kinase equilibrium, ranged from 27 to 34 microM. These values are close to the apparent in vitro Km of ADP for oxidative phosphorylation.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

对新生、幼年和成年犬脑内的磷酸代谢物磷酸肌酸(PCr)、三磷酸腺苷(ATP)、二磷酸腺苷(ADP)和无机磷酸(Pi)进行定量分析,以研究在发育过程中负责满足ATP需求增加的潜在调控机制。采用酶法测定的ATP作为内标,通过磁共振波谱(MRS)在体内测量PCr和Pi的浓度。磷酸肌酸值在发育过程中从出生0 - 2天的2.08 mmol/kg湿重增加到成年脑的5.11 mmol/kg湿重,与总肌酸池(PCr + Cr)从4.12 mmol/kg湿重增加到10.05 mmol/kg湿重平行。脑ATP浓度在出生后发育过程中增加约40%;然而,以细胞内浓度表示时,由于细胞外间隙随年龄下降,ATP并无明显增加。通过MRS估算的Pi浓度在出生后发育过程中显著增加,范围为1.78至2.52 mmol/kg湿重,然后在成年时降至1.97 mmol/kg湿重。在对冷冻钳夹组织进行酶法测量总Pi的那些发育阶段,核磁共振可见的Pi约占总量的48%至93%,新生儿脑内可见比例最高。细胞内pH从新生儿的7.21降至成年时的7.10。随着发育,根据肌酸激酶平衡的各成分计算出的游离ADP浓度范围为27至34 μM。这些值接近ADP在体外氧化磷酸化的表观米氏常数。(摘要截短于250字)

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