Literature DB >> 233470

Lipid protein interactions in mitochondria. VIII. Effect of general anesthetics on the mobility of spin labels in lipid vesicles and mitochondrial membranes.

L Mazzanti, G Curatola, G Zolese, E Bertoli, G Lenaz.   

Abstract

We have studied the effect of general anesthetics on the mobility of two stearic acid spin labels (5-doxyl stearic acid and 16-doxyl stearic acid) in bovine heart mitochondria and in phospholipid vesicles made from either mitochondrial lipids or commercial soybean phospholipids. The general anesthetics used include nonpolar compounds (alcohols, halothane, pentane, diethyl ether, chloroform) and the amphiphatic compound, ketamine. All anesthetics tested increase the mobility of the spin labels in phospholipid vesicles to a limited extent up to a concentration where the ESR spectra become those of free spin labels. On the other hand, anesthetics have a pronounced effect on mitochondrial membranes at concentrations as low as those known to produce general anesthesia; the effect is lower near the bilayer surface (5-doxyl stearic acid) and very strong in the bilayer core (16-doxyl stearic acid). The effects of anesthetics are mimicked by the detergent, Triton X-100. We suggest that the discrepancy between the action of anesthetics in mobilizing the spin labels in lipid vesicles and in membranes results from labilization of lipid protein interactions.

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Year:  1979        PMID: 233470     DOI: 10.1007/bf00743158

Source DB:  PubMed          Journal:  J Bioenerg Biomembr        ISSN: 0145-479X            Impact factor:   2.945


  36 in total

Review 1.  Solubilization of membranes by detergents.

Authors:  A Helenius; K Simons
Journal:  Biochim Biophys Acta       Date:  1975-03-25

2.  Effects of general anesthetics on lipid protein interactions and ATPase activity in mitochondria.

Authors:  G Lenaz; G Curatola; L Mazzanti; G Parenti-Castelli; E Bertoli
Journal:  Biochem Pharmacol       Date:  1978       Impact factor: 5.858

3.  The interaction of a proteolipid from sarcoplasmic reticulum membranes with phospholipids. A spin label study.

Authors:  P Laggner; M D Barratt
Journal:  Arch Biochem Biophys       Date:  1975-09       Impact factor: 4.013

4.  Halothane binds in the adenine-specific niche of crystalline adenylate kinase.

Authors:  W Sachsenheimer; E F Pai; G E Schulz; R H Schirmer
Journal:  FEBS Lett       Date:  1977-07-15       Impact factor: 4.124

5.  Lipid-protein interaction in reconstituted cytochrome c oxidase/phospholipid membranes.

Authors:  A Seelig; J Seelig
Journal:  Hoppe Seylers Z Physiol Chem       Date:  1978-12

6.  Pressure reversal of inhalation anesthetic-induced disorder in spin-labeled phospholipid vesicles.

Authors:  J R Trudell; W L Hubbell; E N Cohen
Journal:  Biochim Biophys Acta       Date:  1973-01-26

Review 7.  Lipid-protein interactions in the structure of biological membranes.

Authors:  G Lenaz
Journal:  Subcell Biochem       Date:  1974-09

8.  Effects of cholesterol and cholesterol derivatives on hydrocarbon chain mobility in lipids.

Authors:  E Oldfield; D Chapman
Journal:  Biochem Biophys Res Commun       Date:  1971-05-07       Impact factor: 3.575

9.  Lipid-protein interactions in mitochondria. I. Conditions affecting binding of phospholipids to lipid-depleted mitochondria.

Authors:  G Lenaz; A M Sechi; G Parenti-Castelli; L Masotti
Journal:  Arch Biochem Biophys       Date:  1970-11       Impact factor: 4.013

10.  Lipid-protein interactions in mitochondria. II. On the nature and biochemical significance of the interaction between phospholipids and lipid-depleted mitochondria.

Authors:  G Lenaz; A M Sechi; L Masotti; G Parenti-Castelli
Journal:  Arch Biochem Biophys       Date:  1970-11       Impact factor: 4.013

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  1 in total

1.  Membranes and phospholipids of liver mitochondria from chronic alcoholic rats are resistant to membrane disordering by alcohol.

Authors:  A J Waring; H Rottenberg; T Ohnishi; E Rubin
Journal:  Proc Natl Acad Sci U S A       Date:  1981-04       Impact factor: 11.205

  1 in total

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