Search PubMedSearch

SEARCH · Search PubMed

Results for “Pyruvates”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 109 records · Page 6Linked to original sources

Effects of acute acid-base changes on rat renal pyruvate dehydrogenase. Renal pyruvate dehydrogenase during acid-base alterations.

Glutamine, the principal source of urinary ammonia, can be fully oxidized or converted to glucose by the kidney. To be oxidized, the carbon skeleton of glutamine must enter the TCA cycle as acetyl CoA formed by pyruvate dehydrogenase (PDH). The purpose of this study was to measure kidney PDH activity (active and total) following acute acid-base changes in vivo. PDHa activity was elevated after acute metabolic alkalosis and acidosis and unchanged by respiratory acidosis. Kidney ADP/ATP, CoA/acetyl CoA and calculated mitochondrial NAD+/NADH ratios were also determined and revealed an increase in kidney ADP/ATP with alkalosis but no changes during metabolic and respiratory acidosis.

Acid-Base Imbalance

Electrophoretic, immunologic and kinetic characterization of erythrocyte pyruvate kinase in the Basenji dog with pyruvate kinase deficiency.

The electrophoretic mobility and the immunologic specificity of erythrocyte pyruvate kinase (PK) of the homozygous Basenji dog with PK deficiency were identical to those of normal M2-type PK isozyme seen in the white cell but not to those of the erythrocyte PK isozyme. Kinetic properties and stability were also consistent with the M2-type PK isozyme. Defective PK in the homozygous red cell was due to the absence of the erythrocyte PK isozyme and the compensatory presence of M2-type PK isozyme, as seen in the severe classical type PK deficiency in man.

Animals

Point mutations in the L-type pyruvate kinase gene of two children with hemolytic anemia caused by pyruvate kinase deficiency.

The molecular alterations responsible for the characteristic enzyme abnormalities in pyruvate kinase (PK) deficiency were investigated in two unrelated children homozygous for PK deficiency. Both variant enzymes were characterized according to the recommendations of the International Committee for Standardization in Haematology. Genomic DNA was specifically amplified by the polymerase chain reaction. Normal and mutant alleles of the L-type PK gene were analyzed by nucleotide sequencing. Heterozygosity of the parents was confirmed by allele-specific oligonucleotide hybridization. In PK Linz a C to T base exchange at position 394 of the L-type PK gene was found. As a result, the 132nd amino acid of the mutant enzyme, arginine (CGC), is replaced by cysteine (TGC). The affected amino acid residue is located within the deduced active site of the protein and the enzyme variant shows strongly altered allosteric properties. PK Beirut shows a C for T substitution at position 1058, changing the 353 amino acid from threonine (ACG) to methionine (ATG). In contrast to PK Linz, this amino acid lies outside the deduced substrate binding site and kinetic parameters of PK Beirut are close to normal. Both enzyme variants show a markedly reduced specific activity and thermolability.

Anemia, Hemolytic