Literature DB >> 6712609

Regional enzyme development in rat brain. Enzymes associated with glucose utilization.

S F Leong, J B Clark.   

Abstract

The development of key enzyme activities concerned with glucose metabolism was studied in six regions of the rat brain in animals from just before birth (-2 days) through the neonatal and suckling period until adulthood (60 days old). The brain regions studied were the cerebellum, medulla oblongata and pons, hypothalamus, striatum, mid-brain and cortex. The enzymes whose developmental patterns were investigated were hexokinase (EC 2.7.1.1), aldolase (EC 4.1.2.13), lactate dehydrogenase (EC 1.1.1.27) and glucose-6-phosphate dehydrogenase (EC 1.1.1.49). Hexokinase, aldolase and lactate dehydrogenase activities develop as a single cluster in all the regions studied, although the timing of this development varies from region to region. Glucose-6-phosphate dehydrogenase activity, however, declines relative to glycolytic enzyme activity as the brain matures. When the different brain regions are compared, it is clear that the medulla develops its glycolytic potential, as indicated by its potential enzyme activity, considerably earlier than the other regions (hypothalamus, striatum and mid-brain), with the cortex and cerebellar activities developing even later. This enzyme developmental sequence correlates well with the neurophylogenetic development of the brain and adds support to the hypothesis that the development of the potential for glycolysis in the brain is a necessary prerequisite for the development of neurological competence.

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Year:  1984        PMID: 6712609      PMCID: PMC1153316          DOI: 10.1042/bj2180131

Source DB:  PubMed          Journal:  Biochem J        ISSN: 0264-6021            Impact factor:   3.857


  29 in total

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Authors:  J B Clark; W J Nicklas
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Journal:  Eur J Biochem       Date:  1969-09

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Authors:  W S Schwark; R L Singhal; G M Ling
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5.  Nutrition and nerve cell growth.

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Journal:  Fed Proc       Date:  1970 Jul-Aug

Review 6.  Enzymic differentiation in mammalian tissues.

Authors:  O Greengard
Journal:  Essays Biochem       Date:  1971       Impact factor: 8.000

7.  Brain metabolism during fasting.

Authors:  O E Owen; A P Morgan; H G Kemp; J M Sullivan; M G Herrera; G F Cahill
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8.  Acetoacetate metabolism in infant and adult rat brain in vitro.

Authors:  T Ito; J H Quastel
Journal:  Biochem J       Date:  1970-02       Impact factor: 3.857

9.  Regional studies of catecholamines in the rat brain. I. The disposition of [3H]norepinephrine, [3H]dopamine and [3H]dopa in various regions of the brain.

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Journal:  J Neurochem       Date:  1966-08       Impact factor: 5.372

10.  Activities of enzymes of ketone-body utilization in brain and other tissues of suckling rats.

Authors:  M A Page; H A Krebs; D H Williamson
Journal:  Biochem J       Date:  1971-01       Impact factor: 3.857

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  28 in total

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Review 2.  Cerebral metabolic adaptation and ketone metabolism after brain injury.

Authors:  Mayumi L Prins
Journal:  J Cereb Blood Flow Metab       Date:  2007-08-08       Impact factor: 6.200

3.  Diabetes induced by streptozotocin causes reduced Na-K ATPase in the brain.

Authors:  S F Leong; T K Leung
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4.  Phenylpyruvic acid decreases glucose-6-phosphate dehydrogenase activity in rat brain.

Authors:  Andrea Pereira Rosa; Carlos Eduardo Dias Jacques; Tarsila Barros Moraes; Clóvis M D Wannmacher; Angela de Mattos Dutra; Carlos Severo Dutra-Filho
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5.  Activity of lactate dehydrogenase in serum and cerebral cortex of immature and mature rats after hypobaric hypoxia.

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6.  Acute administration of 5-oxoproline induces oxidative damage to lipids and proteins and impairs antioxidant defenses in cerebral cortex and cerebellum of young rats.

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7.  Carnitine acyltransferase activities in rat brain mitochondria. Bimodal distribution, kinetic constants, regulation by malonyl-CoA and developmental pattern.

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8.  Intracerebroventricular administration of N-acetylaspartic acid impairs antioxidant defenses and promotes protein oxidation in cerebral cortex of rats.

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Review 9.  Hitting a moving target: Basic mechanisms of recovery from acquired developmental brain injury.

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10.  Regional enzyme development in rat brain. Enzymes of energy metabolism.

Authors:  S F Leong; J B Clark
Journal:  Biochem J       Date:  1984-02-15       Impact factor: 3.857

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