γ-glutamyl tranferase in a model of carcinogenesis in rats

  • S. O. Babij Oles’ Gonchar Dnipropetrovsk National University
  • O. O. Djomshina Oles’ Gonchar Dnipropetrovsk National University
  • N. I. Shtemenko Oles’ Gonchar Dnipropetrovsk National University

Abstract

For the first time activity of membrane bound and soluble forms of γ-glutamyl transferase in the rat erythrocytes under the model tumour in vivo and under correction of the pathological state by complexcompounds of rhenium (III) with organic ligands and cisplatin (rhenium-platinum system) was studied. The increased activity of the membrane bound enzyme and decrease of its cytosolic activity in the red blood cells during development of Guerin’s carcinoma T8 was found. Also the positive impact of the rheniumplatinum system on the enzymatic activity in the erythrocytes was shown, namely: the reduction of membrane bound and increase of cytosolic activity. As a result, the ratio between activity of the membrane bound enzyme and cytosolic one verged towards the correct level. The conclusion was made that the use of membrane bound and soluble γ-glutamyl transferase in the erythrocytes as a diagnostic enzyme of carcinogenesis is reasonable.

References

Бреслоу Е. Комплексы металлов с белками / Неорг. химия. – М. : Мир, 1978. – 254 с.

Воллеман М. Биохимия опухолей мозга / Под ред. М. Ш. Промыслова. – М. : Мир, 1977. – 213 с.

Гончарова Л. Л. Тиолсульфидная система в клинической практике // Лабораторное дело. – 2003. – № 2. – С. 3–9.

Дурнов Л. А. Опухоли у детей. – М. : Медицина, 1970. – 432 с.

Жабицкая Е. Д. Влияние эритроцитарных аномалий на аминокислотный состав плазмы крови / Е. Д. Жабицкая, Н. И. Штеменко, О. А. Сорочан // Вісник Дніпропетр. ун-ту. Біологія. Екологія. – 2004. – № 2. – С. 46–49.

Зильва Д. Клиническая химия в диагностике и лечении / Д. Зильва, П. Р. Пэинел. – М. : Медицина, 1988. – 527 с.

Камышников В. C. Пособие по клинико-биохимическим исследованиям и лабораторной диагностике. – М. : Медпрессинформ, 2004. – 414 с.

Система протеолиза, апоптоз и антиэндотоксиновый иммунитет у больных со злокачественными новообразованиями / В. А. Кубышкин, А. И. Крадинов, В. В. Опрышко и др. // Таврический медико-биологический вестник. – 2009. – Т. 12, № 4. – С. 95–103.

Кулинский В. И. Активные формы кислорода и оксидативная модификация макромолекул:польза, вред и защита // Соросовский образовательный журнал. – 1999. – № 1. – С. 2–7.

Кыров Д. Н. Исследование модулирующих эффектов гемолизата эритроцитов на активность Na, K-АТФазы // Автореф. дисс. … канд. биол. наук. – Тюмень, 2006. – 19 с.

Шалимов С. А. Лечение неоперабельных опухолей органов брюшной полости / С. А. Шалимов, Л. В. Кейсевич, А. А. Литвиненко и др. // Здоров’я України. – 2003. – № 76. – С. 5–9.

Изучение влияния комплексов рения с органическими лигандами на кислотную резистентность эритроцитов человека / Н. И. Штеменко, И. В. Пирожкова-Паталах, А. В. Штеменко, А. А. Голиченко // Укр. біохім. журн. – 2000. – Т. 72, № 3. – С. 77–81.

Antioxidant status in patients with sleep apnoea and impact of continuous positive airway pressure treatmen / A. Barcelo, F. Barbe, M. Pen et al. // Eur. Respir. J. – 2006. – Vol. 27. – P. 756–760.

Collins D. Plasma intestinal alkaline phosphotase and intermediate molecular mass gammaglutamyltransferase activites in the differential diagnosis of jaundice / D. Collins, M. F. Good, S. B. Rosalki et al. // J. Clin. Pathol. – 1987. – Vol. 40. – P. 1252–1255.

Possible role of membrane gamma-glutamyltransferase activity in the facilitation of transferringdependent and independent iron uptake by cancer cells / S. Dominici, L. Pieri, M. Comporti, A. Pompella // Caner Cell International. – Vol. 3, N 7. – C. 2–8.

Characterization of acute undiferentiated leukimia by combined analysis of plasma membraneassociated glutamyltransferase and soluble terminal transferase / D. Heumann, G. Losa, C. Banras et al. // The J. of the Am. Society of Hematology. – 1985. – Vol. 6, N 2. – P. 255–258.

Kratz F. A. Anticancer metal complexes and tumour targeting strategies / F. A. Kratz, M. T. Schutte //The Cancer J. – 1998. – Vol. 11, N 4. – P. 1–11.

Long M. G. Erytrocyte mean cellular volume and gammalutamyltransferase activity in screening for alcohol abuse in women presenting with spontaneous miscarriage / M. G. Long, E. J. Waterson, I. M. Murray-Lyon // J. of Obst. and Gencol. – 1993. – Vol. 13, N 3. – P. 175–176.

Patent № 5.096.812 (Unated States Patent) Assay method for gamma glutamyltransferase (GGT) in liquid blood and drier blood // J. M. Rachel, L. M. Smith, L. R. Pfaltzgraff. – 1992, March. – 8 p.

Blood glutathione disulfide: in vivo factor or in vitro artifact? / R. Rossi, A. Milzani, I. Dalle-Donne et al. // Clin. Chem. – 2002. – Vol. 48. – P. 742–753.

Sener A. Activity determination, kinetic analyses and isoenzyme indetification of gamma glutamyltransferase in human neutrophils / A. Sener, T. Yardimici // J. of Biochem. And Mol. Biol. – 2005 – Vol. 38, N 3. – P. 343–349.

Sheikh-Hamad D. Cisplatin-induced cytoxicity: is the nucleus relevant? // Am. J. Physiol. Renal Physiol. – 2008. – Vol. 295. – P. 42–43. >>doi:10.1152/ajprenal.90293.2008

Shimada H. Distribution of gamma-glutamyl transpeptidase and glutaminase isoenzymes in the rabbit single nephron / H. Shimada, E. Hitoshi and S. Fuminori // Jpn. J. Pharmacol. – 1982. – Vol. 32. – P. 121–129. >>doi:10.1254/jjp.32.121

Synthesis, characterization, in vivo antitumor properties of the cluster rhenium compound with GABA ligands and its synergism with cisplatin / A. V. Shtemenko, P. Collery, N. I. Shtemenko et al. // Dalton Trans. – 2009. – P. 5132–5136. >>doi:10.1039/b821041a

Liposomal forms of rhenium cluster compounds: Enhancement of biological activity / N. I. Shtemenko, E. D. Zhabitskaya, O. V. Bersenina et al. // Chemistry & Biodiversity. – 2008. – Vol. 5. – P. 1660–1667. >>doi:10.1002/cbdv.200890153

Shtemenko N. I. Recent advantages in application of cluster rhenium compounds as antitumor agents / N. I. Shtemenko, P. Collery, A. V. Shtemenko // Metal Ions in Biology and Medicine. – 2008. – Vol. 10. – P. 441–445.

Wenham D. R. Multiple forms of gamma-еglutamyltransferase: a clinical study // Clin. Chem. – 1985. – Vol. 31. – P. 559–572.

Whitfield J. Serum glutamyltransferase and risk of disease // Clin. Chem. – 2007. – Vol. 53. – P. 1–2. >>doi:10.1373/clinchem.2006.080911

Meng abnormal expression of hepatoma-derived gamma-glutamyltransferase subtyping and its early alteration for carcinogenesis of hepatocytes / Deng-Fu Yao, Zhi-Zhen Dong, Deng-Bing Yao et al. //

Hepatobiliary & Pancreatic Diseases International. – 2004. – Vol. 3. – P. 564–570.

Zhang H. Redox regulation of glutamyl transpeptidase / H. Zhang, H. J. Forman // Am. J. of Respiratory Cell and Mol. Biol. – 2009. – Vol. 41. – P. 509–515. >>doi:10.1165/rcmb.2009-0169TR

Published
2010-07-08
How to Cite
Babij, S. O., Djomshina, O. O., & Shtemenko, N. I. (2010). γ-glutamyl tranferase in a model of carcinogenesis in rats. Regulatory Mechanisms in Biosystems, 1(1), 28-33. https://doi.org/10.15421/021005