Transcriptional regulation of lactate dehydrogenase activity in rat kidney cells in diabetic nephropathy

Aim. To study the features of transcriptional regulation of the activity and isoenzyme composition of lactate dehydrogenase in the kidneys of Rattus norvegicus L. in diabetic nephropathy.Materials and methods. The study included 20 male laboratory rats (Rattus norvegicus L.) divided into two equal g...

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Main Authors: A. T. Eprintsev, E. S. Presnyakov, N. V. Selivanova
Format: Article
Language:English
Published: Siberian State Medical University (Tomsk) 2024-04-01
Series:Бюллетень сибирской медицины
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Online Access:https://bulletin.ssmu.ru/jour/article/view/5522
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author A. T. Eprintsev
E. S. Presnyakov
N. V. Selivanova
author_facet A. T. Eprintsev
E. S. Presnyakov
N. V. Selivanova
author_sort A. T. Eprintsev
collection DOAJ
description Aim. To study the features of transcriptional regulation of the activity and isoenzyme composition of lactate dehydrogenase in the kidneys of Rattus norvegicus L. in diabetic nephropathy.Materials and methods. The study included 20 male laboratory rats (Rattus norvegicus L.) divided into two equal groups: “Norm” – intact rats injected with 0.9% NaCl intraperitoneally and “Diabetes” – animals with alloxaninduced diabetes (DM1 model). The activity, subcellular localization, and mobility of lactate dehydrogenase (LDH, EC 1.1.1.27) isoenzymes were studied using spectrophotometry and electrophoresis. LDHA and LDHB gene transcripts were analyzed by the polymerase chain reaction.Results. Analysis of the LDH activity showed that this parameter increased by more than 6 times in the animals with diabetic nephropathy compared to the control group. Moreover, the increase in the rate of the LDH activity was a consequence of the enzyme activation in all the studied compartments of the cell and is consistent with the parameter in the homogenate. The increase in the LDH activity in diabetic nephropathy may result from redistribution of the activity rate between the available isoforms and may be associated with an increase in the transcription rate of genes encoding subunits A and B of this enzyme.Conclusion. The increase in the LDH activity is likely associated with the activation of renal gluconeogenesis, the main substrate for which is lactic acid reabsorbed in the renal glomeruli. The revealed increase in the LDH activity in the kidneys of rats with diabetic nephropathy may be associated with adaptation of their metabolism to the pathological state.
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spelling doaj-art-4adfb776b7094a0a8189f27e4e2d37872025-08-20T03:37:41ZengSiberian State Medical University (Tomsk)Бюллетень сибирской медицины1682-03631819-36842024-04-01231303610.20538/1682-0363-2024-1-30-363050Transcriptional regulation of lactate dehydrogenase activity in rat kidney cells in diabetic nephropathyA. T. Eprintsev0E. S. Presnyakov1N. V. Selivanova2Voronezh State UniversityVoronezh State UniversityVoronezh State UniversityAim. To study the features of transcriptional regulation of the activity and isoenzyme composition of lactate dehydrogenase in the kidneys of Rattus norvegicus L. in diabetic nephropathy.Materials and methods. The study included 20 male laboratory rats (Rattus norvegicus L.) divided into two equal groups: “Norm” – intact rats injected with 0.9% NaCl intraperitoneally and “Diabetes” – animals with alloxaninduced diabetes (DM1 model). The activity, subcellular localization, and mobility of lactate dehydrogenase (LDH, EC 1.1.1.27) isoenzymes were studied using spectrophotometry and electrophoresis. LDHA and LDHB gene transcripts were analyzed by the polymerase chain reaction.Results. Analysis of the LDH activity showed that this parameter increased by more than 6 times in the animals with diabetic nephropathy compared to the control group. Moreover, the increase in the rate of the LDH activity was a consequence of the enzyme activation in all the studied compartments of the cell and is consistent with the parameter in the homogenate. The increase in the LDH activity in diabetic nephropathy may result from redistribution of the activity rate between the available isoforms and may be associated with an increase in the transcription rate of genes encoding subunits A and B of this enzyme.Conclusion. The increase in the LDH activity is likely associated with the activation of renal gluconeogenesis, the main substrate for which is lactic acid reabsorbed in the renal glomeruli. The revealed increase in the LDH activity in the kidneys of rats with diabetic nephropathy may be associated with adaptation of their metabolism to the pathological state.https://bulletin.ssmu.ru/jour/article/view/5522lactate dehydrogenasediabetic nephropathyisoenzymeregulationtranscription
spellingShingle A. T. Eprintsev
E. S. Presnyakov
N. V. Selivanova
Transcriptional regulation of lactate dehydrogenase activity in rat kidney cells in diabetic nephropathy
Бюллетень сибирской медицины
lactate dehydrogenase
diabetic nephropathy
isoenzyme
regulation
transcription
title Transcriptional regulation of lactate dehydrogenase activity in rat kidney cells in diabetic nephropathy
title_full Transcriptional regulation of lactate dehydrogenase activity in rat kidney cells in diabetic nephropathy
title_fullStr Transcriptional regulation of lactate dehydrogenase activity in rat kidney cells in diabetic nephropathy
title_full_unstemmed Transcriptional regulation of lactate dehydrogenase activity in rat kidney cells in diabetic nephropathy
title_short Transcriptional regulation of lactate dehydrogenase activity in rat kidney cells in diabetic nephropathy
title_sort transcriptional regulation of lactate dehydrogenase activity in rat kidney cells in diabetic nephropathy
topic lactate dehydrogenase
diabetic nephropathy
isoenzyme
regulation
transcription
url https://bulletin.ssmu.ru/jour/article/view/5522
work_keys_str_mv AT ateprintsev transcriptionalregulationoflactatedehydrogenaseactivityinratkidneycellsindiabeticnephropathy
AT espresnyakov transcriptionalregulationoflactatedehydrogenaseactivityinratkidneycellsindiabeticnephropathy
AT nvselivanova transcriptionalregulationoflactatedehydrogenaseactivityinratkidneycellsindiabeticnephropathy