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Stereospecific induction of apoptosis in U937 cells by <em>N</em>-octanoyl-sphingosine stereoisomers and <em>N</em>-octyl-sphingosine.

Authors :
Karasavvas, Nicos
Erukulla, Ravi Kumar
Bittman, Robert
Lockshin, Richard
Zakeri, Zahra
Source :
European Journal of Biochemistry; 3/1/96, Vol. 236 Issue 2, p729-737, 9p
Publication Year :
1996

Abstract

We investigated the ability of N-octanoyl-sphingosine (c&lt;subscript&gt;x&lt;/subscript&gt;-Cer) stereoisomers, N-octanoyl-DL-erythrodihydrosphingosine (DL-e-DHC&lt;subscript&gt;x&lt;/subscript&gt;-Cer), and a new ceramide derivative, N-octyl-D-erythro-spingosine (D-e-C&lt;subscript&gt;x&lt;/subscript&gt;-Ceramine), to induce apoptosis in U937 cells. We found the C&lt;subscript&gt;x&lt;/subscript&gt;-Cer stereoisomers to be stereo-specific with the D- and L-threo stereoisomers being severaflold more potent than the erythro in inducing nucleosomal fragmentation. The order of potency was : D-t-C&lt;subscript&gt;x&lt;/subscript&gt;-Cer &gt; L-e-C&lt;subscript&gt;x&lt;/subscript&gt;-Cer &gt; DL-e-DHC&lt;subscript&gt;x&lt;/subscript&gt;-Cer. The importance of the carbonyl group in apoptosis was investigated by using a new ceramide derivative, D-e-C&lt;subscript&gt;x&lt;/subscript&gt;-Ceramine, in which the carbonyl group was replaced by a methylene group. The carbonyl group was not necessary fro triggering apoptosis. In fact, replacement of the carbonly group decreased substantially the time required for cells to die, with maximum DNA fragmentation occurring at 6 h as opposed to the 18 h required by D-e-C&lt;subscript&gt;x&lt;/subscript&gt;-Cer. To explore possible mechanisms by which these compounds trigger the apoptotic pathway, we tested their ability to increased the endogenous levels of cellular ceramide and to differentially activate aceramide-activated protein kinase (CAPK). While the potent DNA fragmentation-inducing compounds D-e-C&lt;subscript&gt;x&lt;/subscript&gt;-Ceramine and L-t-C&lt;subscript&gt;x&lt;/subscript&gt;-Cer failed to increased the cellular ceramide levels, D-e-C&lt;subscript&gt;x&lt;/subscript&gt;-Cer, D-t-C&lt;subscript&gt;x&lt;/subscript&gt;-Cer and D-e-C&lt;subscript&gt;x&lt;/subscript&gt;-Ceramineactivated the CAPK equally. These studies suggest that the DNA fragmentation-inducing ability of the threo stereoisomers and D-e-C&lt;subscript&gt;x&lt;/subscript&gt;-Ceraminecannot be attributed either to an increase in the activity of CAPK, or, as illustrated by D-e-C&lt;subscript&gt;x&lt;/subscript&gt; ceramineand L-t-C&lt;subscript&gt;x&lt;/subscript&gt;-Cer, to the differential elevation of endogenous ceramide. The phosphatase inhibitor okadaic acid failed to protect U937 cells from apoptosis induced by D-e-C&lt;subscript&gt;x&lt;/subscript&gt;-Cer. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00142956
Volume :
236
Issue :
2
Database :
Complementary Index
Journal :
European Journal of Biochemistry
Publication Type :
Academic Journal
Accession number :
12958965
Full Text :
https://doi.org/10.1111/j.1432-1033.1996.00729.x