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Protein Synthesis Linked to Respiration and Phosphorylation in Intact Euglena Mitochondria
Authors:Delorme  Evelyne; Gomez-Silva  Benito; Stern  Arthur I; Schiff  Jerome A
Institution:Institute for Photobiology, Brandeis University Waltham, MA 02254, U.S.A.
Abstract:Highly purified condensed mitochondria obtained from bleachedmutant. W10BSmL of Euglena gracilis Klebs var bacillaris Coriincorporate 35S]methionine into protein when fortified withmalate, ADP, Mg2+, phosphate and a sucrose osmoticum. Twentyto twenty-five polypeptide bands were found to be labeled inorganello when the labeled protein was subjected to sodium dodecylsulfatepolyacrylamide gel electrophoresis. Methionine incorporation,but not respiration or oxidative phosphorylation, was blockedby chloramphenicol and other 70S ribosomal translation inhibitorsbut cycloheximide and ribonuclease were without effect. Inhibitorsof electron transport and uncouplers of oxidative phosphorylationwere excellent inhibitors of protein synthesis. Thus, thesemitochondrial preparations carry out protein synthesis in organellothat is linked to respiration and oxidative phosphorylation. 1Present address: VA Hospital Outpatient Clinic, 17 Court St.,Boston, MA 02115, U.S.A. 2Present address: Laboratories de Microbiologia e Inmunologia,Universidad Catolica de Chile, Casilla 114-D, Santiago, Chile. 3Present address: Botany Department, University of Massachusetts,Amherst, MA 01003, U.S.A. (Received June 17, 1985; Accepted October 28, 1985)
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