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A M Mungikar

Publications and source records attributed to A M Mungikar.

11 recordsLinked to original sources

Substrate-induced spectral changes in human normal and chronic myeloid leukemic granulocytes.

Several drugs/chemicals were allowed to interact with the cytochrome P-450 dependent mixed function oxidase system in the postmitochrondrial supernatant fractions of Ficoll-Hypaque-separated granulocytes from human normal subjects and patients with chronic myeloid leukemia. The substrate-induced spectral changes were followed by recording the difference spectra. Compounds conventionally classified as type I and type II substrates, on addition to S1 fractions of both normal and leukemic granulocytes, caused spectral changes that were reverse to those reported for the rat liver microsomes. Aminopyrine, phenobarbital, and Tween 80 evoked a reverse type I spectral change with a peak at 420-430 nm and a trough at 380-400 nm, whereas aniline and pyridine induced a modified type I (a reverse type II) spectral change characterized by a peak at 408 nm and a trough at 421 nm. These changes were found to be quantitatively proportional to the amounts of substrate added. However, the magnitude of the peaks and troughs was considerably less in the S1 fraction of the leukemic granulocytes. Correspondingly, total heme content was significantly decreased in S1 fractions of CML granulocytes as compared to similar fractions of normal granulocytes.

Aniline Compounds

Plasma membranes from normal and chronic myeloid leukemic granulocytes: isolation and two-dimensional polyacrylamide gel electrophoretic analysis.

Normal human granulocytes obtained by Ficoll-Hypaque sedimentation were subjected to mild hypotonic shock and disruption by shear. The homogenate was fractionated by differential centrifugation and equilibrium ultracentrifugation to yield a plasma membrane preparation constituting 1% of the total cellular protein and enriched fifteen- and six-fold in alkaline phosphatase and Mg2+-adenosine triphosphatase activities, respectively. Granulocytes obtained from patients with chronic myeloid leukemia (CML) were identically processed. The protein constituents of both the normal and CML granulocyte plasma membranes were resolved by two-dimensional polyacrylamide gel electrophoresis. Comparison of the stained gels revealed CML-associated quantitative changes in four out of the fifteen protein spots examined. Thus, this analysis has permitted identification of those protein moieties that deserve attention for further isolation and purification.

Adolescent