Literature DB >> 10490450

Current cytochemical techniques for the investigation of peroxisomes. A review.

H D Fahimi1, E Baumgart.   

Abstract

The past decade has witnessed unprecedented progress in elucidation of the complex problems of the biogenesis of peroxisomes and related human disorders, with further deepening of our understanding of the metabolic role of this ubiquitous cell organelle. There have been many recent reviews on biochemical and molecular biological aspects of peroxisomes, with the morphology and cytochemistry receiving little attention. This review focuses on the state-of-the-art cytochemical techniques available for investigation of peroxisomes. After a brief introduction into the use of the 3,3'-diaminobenzidine method for localization of catalase, which is still most commonly used for identification of peroxisomes, the cerium technique for detection of peroxisomal oxidases is discussed. The influence of the buffer used in the incubation medium on the ultrastructural pattern obtained in rat liver peroxisomes in conjunction with the localization of urate oxidase in their crystalline cores is discussed, particularly since Tris-maleate buffer inhibits the enzyme activity. In immunocytochemistry, quantitation of immunogold labeling by automatic image analysis enables quantitative assessment of alterations of proteins in the matrix of peroxisomes. This provides a highly sensitive approach for analysis of peroxisomal responses to metabolic alterations or to xenobiotics. The recent evidence suggesting the involvement of ER in the biogenesis of "preperoxisomes" is mentioned and the potential role of preembedding immunocytochemistry for identification of ER-derived early peroxisomes is emphasized. The use of GFP expressed with a peroxisomal targeting signal for the investigation of peroxisomes in living cells is briefly discussed. Finally, the application of in situ hybridization for detection of peroxisomal mRNAs is reviewed, with emphasis on a recent protocol using perfusion-fixation, paraffin embedding, and digoxigenin-labeled cRNA probes, which provides a highly sensitive method for detection of both high- and low-abundance mRNAs encoding peroxisomal proteins. (J Histochem Cytochem 47:1219-1232, 1999)

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Year:  1999        PMID: 10490450     DOI: 10.1177/002215549904701001

Source DB:  PubMed          Journal:  J Histochem Cytochem        ISSN: 0022-1554            Impact factor:   2.479


  9 in total

Review 1.  Peroxisomes: 40 years of histochemical staining, personal reminiscences.

Authors:  H Dariush Fahimi
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2.  Close association of centrosomes to the distal ends of the microbody during its growth, division and partitioning in the green alga Klebsormidium flaccidum.

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4.  The biogenesis protein PEX14 is an optimal marker for the identification and localization of peroxisomes in different cell types, tissues, and species in morphological studies.

Authors:  Phillip Grant; Barbara Ahlemeyer; Srikanth Karnati; Timm Berg; Ingra Stelzig; Anca Nenicu; Klaus Kuchelmeister; Denis I Crane; Eveline Baumgart-Vogt
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Review 7.  Peroxisomes in brain development and function.

Authors:  Johannes Berger; Fabian Dorninger; Sonja Forss-Petter; Markus Kunze
Journal:  Biochim Biophys Acta       Date:  2015-12-11

8.  Ultrastructural, Cytochemical, and Comparative Genomic Evidence of Peroxisomes in Three Genera of Pathogenic Free-Living Amoebae, Including the First Morphological Data for the Presence of This Organelle in Heteroloboseans.

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Journal:  Genome Biol Evol       Date:  2020-10-01       Impact factor: 3.416

9.  Impaired mitochondrial medium-chain fatty acid oxidation drives periportal macrovesicular steatosis in sirtuin-5 knockout mice.

Authors:  Eric S Goetzman; Sivakama S Bharathi; Yuxun Zhang; Xue-Jun Zhao; Steven F Dobrowolski; Kevin Peasley; Sunder Sims-Lucas; Satdarshan P Monga
Journal:  Sci Rep       Date:  2020-10-27       Impact factor: 4.379

  9 in total

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