Cytochemical Localization of Peroxidatic Activity of Catalase in Rat Hepatic Microbodies (peroxisomes)
نویسنده
چکیده
Prominent staining of rat hepatic microbodies was obtained by incubating sections of aldehyde-fixed rat liver in a modified Graham and Karnovsky's medium for ultrastructural demonstration of peroxidase activity. The electron-opaque reaction product was deposited uniformly over the matrix of the microbodies. The microbodies were identified by their size, shape, presence of tubular nucleoids, and other morphologic characteristics, and by their relative numerical counts. The staining reaction was inhibited by the catalase inhibitor, aminotriazole, and by KCN, azide, high concentrations of H(2)O(2), and by boiling of sections. These inhibition studies suggest that the peroxidatic activity of microbody catalase is responsible for the staining reaction. In the absence of exogenous H(2)O(2) appreciable staining of microbodies was noted only after prolonged incubation. Addition of sodium pyruvate, which inhibits endogenous generation of H(2)O(2) by tissue oxidases, or of crystalline catalase, which decomposes such tissue-generated H(2)O(2), completely abolished microbody staining in the absence of H(2)O(2). Neither diaminobenzidine nor the product of its oxidation had any affinity to bind nonenzymatically to microbody catalase and thus stain these organelles. The staining of microbodies was optimal at alkaline pH of 8.5. The biological significance of this alkaline pH in relation to the similar pH optima of several microbody oxidases is discussed. In addition to staining of microbodies, a heat-resistant peroxidase activity is seen in some of the peribiliary dense bodies. The relation of this reaction to the peroxidase activity of lipofuscin pigment granules is discussed.
منابع مشابه
THE EFFECT OF GLUTARALDEHYDE ON CATALASE Biochemical and Cytochemical Studies with Beef Liver Catalase and Rat Liver Peroxisomes
Peroxidatic activity of catalase (E .C .1 .11 .1 .6) was discovered by Keilin and Hartree (1), and it has been firmly established that, catalase oxidizes various substrates such as ethanol, methanol, nitrite, and formate (2-4) . Crystalline beef liver catalase, used as an enzyme tracer (5), and the peroxisomal catalase (6, 7) have been visualized cytochemically by a modification of the 3,3'diam...
متن کاملMICROBODIES IN EXPERIMENTALLY ALTERED CELLS VII. CPIB-induced Hepatic Microbody Proliferation in the Absence of Significant Catalase Synthesis
Previous studies (1-3) demonstrated a significant increase in number of microbodies (peroxisomes) and concomitant elevation in catalase activity in male rat liver following administration of ethyl-o, p-chlorophenoxyisobutyrate (clofibrate, CPIB), a hypolipidemic drug that lowers serum cholesterol and triglycerides in man (4) and in experimental animals (5, 6) . Neither the significance of micro...
متن کاملCytochemical Localization of Catalase in Leaf Microbodies (peroxisomes)
Segments of mature tobacco leaves were fixed in glutaraldehyde, incubated in medium containing 3,3'-diaminobenzidine (DAB) and hydrogen peroxide, and postfixed in osmium tetroxide. Electron microscopic observation of treated tissues revealed pronounced deposition of a highly electron-opaque material in microbodies but not in other organelles. The coarsely granular reaction product is presumably...
متن کاملPeroxidase Activity in Rat Liver Microbodies after Amino-triazole Inhibition
The in vivo effects of 3-amino-1,2,4-triazole (AT) on the fine structure of microbodies in hepatic cells of male rats has been studied by the peroxidase-staining technique. Within 1 hr of intraperitoneal injection AT abolishes microbody peroxidase-staining, and the return of staining coincides temporally with the known pattern of return of catalase activity following AT inhibition; this is furt...
متن کاملCytochemical Localization of Malate Synthase in Glyoxysomes
Cytochemical staining techniques for microbodies (peroxisomes) are limited at present to the enzymes catalase and alpha-hydroxy acid oxidase, and neither technique can distinguish glyoxysomes from other microbodies. Described here is a procedure using ferricyanide for the cytochemical demonstration by light and electron microscopy of malate synthase activity in glyoxysomes of cotyledons from fa...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- The Journal of Cell Biology
دوره 43 شماره
صفحات -
تاریخ انتشار 1969