Literature DB >> 7564068

Effects of Ca++ and glycine on lipid breakdown and death of ATP-depleted MDCK cells.

M A Venkatachalam1, J M Weinberg, Y Patel, U Hussong, J A Davis.   

Abstract

The relationships between cytosolic free calcium (Caf), cell associated glycine, phospholipid hydrolysis and cell death were investigated in Madin-Darby canine kidney (MDCK) cells injured by depletion of adenosine triphosphate (ATP). Glucose free incubation for three hours with a mitochondrial uncoupler resulted in progressive loss of glycine from cells. However, they were not lethally injured unless a perturbation of Ca++ homeostasis was also induced. Exposure to a Ca++ ionophore and uncoupler in 1.25 mM Ca++ medium (+Ca) resulted in accelerated cell death. ATP depleted cells with ionophore in 100 nM Ca++ medium (-Ca) were also lethally injured, but after a significant delay. Depletion of glycine preceded death in both groups of cells. Exogenous glycine (5 mM) protected +Ca cells against lethal membrane damage, but the beneficial effects were lost over a period of time. In contrast, -Ca cells were completely protected throughout. Phospholipid mass and radioactive label in lipid fractions of cells prelabeled with 3H-oleic acid were measured. Accelerated death of +Ca cells was accompanied by large decreases of phospholipid mass, loss of phospholipid label, and accumulation of unesterified labeled fatty acid. These changes were greatly decreased by incubation in -Ca medium. On the other hand, protection by glycine could not be attributed to modifications of either the massive breakdown of phospholipids that occurred in +Ca cells, or the modest changes seen in -Ca cells. In +Ca cells, the deleterious effects of increased Caf and phospholipid breakdown ultimately prevailed over protection by the amino acid. Thus, separate pathways of cell death associated with increased Caf and decreased glycine were defined in ATP depleted, Ca(+)- permeabilized MDCK cells. Calcium excess and massive phospholipid loss are features of a damage process that occurs independently of whether cells are protected by glycine or not. Conversely, the glycine sensitive component of injury is expressed regardless of whether intracellular Ca++ is increased, or large phospholipid losses occur. ATP depletion in -Ca medium provides a system to study mechanisms of glycine cytoprotection uncomplicated by Ca++ toxicity.

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Year:  1995        PMID: 7564068     DOI: 10.1038/ki.1995.275

Source DB:  PubMed          Journal:  Kidney Int        ISSN: 0085-2538            Impact factor:   10.612


  9 in total

1.  Protection of ATP-depleted cells by impermeant strychnine derivatives: implications for glycine cytoprotection.

Authors:  Z Dong; M A Venkatachalam; J M Weinberg; P Saikumar; Y Patel
Journal:  Am J Pathol       Date:  2001-03       Impact factor: 4.307

Review 2.  The role of glycine in regulated cell death.

Authors:  Joel M Weinberg; Anja Bienholz; M A Venkatachalam
Journal:  Cell Mol Life Sci       Date:  2016-04-11       Impact factor: 9.261

3.  Cytoprotection by glycine against ATP-depletion-induced injury is mediated by glycine receptor in renal cells.

Authors:  Chao Pan; Xiaoming Bai; Leming Fan; Yong Ji; Xiaoyu Li; Qi Chen
Journal:  Biochem J       Date:  2005-09-01       Impact factor: 3.857

4.  Cytosolic-free calcium increases to greater than 100 micromolar in ATP-depleted proximal tubules.

Authors:  J M Weinberg; J A Davis; M A Venkatachalam
Journal:  J Clin Invest       Date:  1997-08-01       Impact factor: 14.808

Review 5.  Glycine, a simple physiological compound protecting by yet puzzling mechanism(s) against ischaemia-reperfusion injury: current knowledge.

Authors:  Frank Petrat; Kerstin Boengler; Rainer Schulz; Herbert de Groot
Journal:  Br J Pharmacol       Date:  2012-04       Impact factor: 8.739

6.  Internucleosomal DNA cleavage triggered by plasma membrane damage during necrotic cell death. Involvement of serine but not cysteine proteases.

Authors:  Z Dong; P Saikumar; J M Weinberg; M A Venkatachalam
Journal:  Am J Pathol       Date:  1997-11       Impact factor: 4.307

7.  Glycine protection of PC-12 cells against injury by ATP-depletion.

Authors:  Kan Zhang; Joel M Weinberg; Manjeri A Venkatachalam; Zheng Dong
Journal:  Neurochem Res       Date:  2003-06       Impact factor: 3.996

8.  [Mini-organ cultures of human nasal mucosa. A model for eco-genotoxicological investigations].

Authors:  B C Wallner; U A Harréus; F Gamarra; A Sassen; N H Kleinsasser
Journal:  HNO       Date:  2005-12       Impact factor: 1.284

9.  Glycine and glycine receptor signalling in non-neuronal cells.

Authors:  Jimmy Van den Eynden; Sheen Saheb Ali; Nikki Horwood; Sofie Carmans; Bert Brône; Niels Hellings; Paul Steels; Robert J Harvey; Jean-Michel Rigo
Journal:  Front Mol Neurosci       Date:  2009-08-20       Impact factor: 5.639

  9 in total

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