Literature DB >> 16981903

Chitosomes: past, present and future.

Salomon Bartnicki-Garcia1.   

Abstract

José Ruiz-Herrera's discovery that chitin microfibrils could be made by a fungal extract paved the way for elucidating the intracellular location of chitin synthetase. In collaboration with Charles Bracker, chitosomes were identified as the major reservoir of chitin synthetase in fungi. Unique in size, buoyant density, and membrane thickness, chitosomes were found in a wide range of fungi. Their reversible dissociation into 16S subunits is another unique property of chitosomes. These 16S subunits are the smallest molecular entities known to retain chitin synthetase activity. Further dissociation leads to complete loss of activity. From studies with secretory mutants, yeast researchers concluded that chitosomes were components of the endocytosis pathway. However, key structural and enzymatic characteristics argue in favor of the chitosome being poised for exocytotic delivery rather than endocytotic recycling. The chitosome represents the main vehicle for delivering chitin synthetase to the cell surface. An immediate challenge is to elucidate chitosome ontogeny and the role of proteins encoded by the reported chitin synthetase genes in the structure or function of chitosomes. The ultimate challenge would be to understand how the chitosome integrates with the cell surface to construct the organized microfibrillar skeleton of the fungal cell wall.

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Year:  2006        PMID: 16981903     DOI: 10.1111/j.1567-1364.2006.00158.x

Source DB:  PubMed          Journal:  FEMS Yeast Res        ISSN: 1567-1356            Impact factor:   2.796


  28 in total

1.  Phosphorylation regulates polarisation of chitin synthesis in Candida albicans.

Authors:  Megan D Lenardon; Sarah A Milne; Héctor M Mora-Montes; Florian A R Kaffarnik; Scott C Peck; Alistair J P Brown; Carol A Munro; Neil A R Gow
Journal:  J Cell Sci       Date:  2010-06-08       Impact factor: 5.285

2.  The myosin motor domain of fungal chitin synthase V is dispensable for vesicle motility but required for virulence of the maize pathogen Ustilago maydis.

Authors:  Steffi Treitschke; Gunther Doehlemann; Martin Schuster; Gero Steinberg
Journal:  Plant Cell       Date:  2010-07-27       Impact factor: 11.277

Review 3.  The C. elegans eggshell.

Authors:  Kathryn K Stein; Andy Golden
Journal:  WormBook       Date:  2018-08-02

4.  Budding Yeast Has a Minimal Endomembrane System.

Authors:  Kasey J Day; Jason C Casler; Benjamin S Glick
Journal:  Dev Cell       Date:  2018-01-08       Impact factor: 12.270

5.  PKC1 is essential for protection against both oxidative and nitrosative stresses, cell integrity, and normal manifestation of virulence factors in the pathogenic fungus Cryptococcus neoformans.

Authors:  Kimberly J Gerik; Sujit R Bhimireddy; Jan S Ryerse; Charles A Specht; Jennifer K Lodge
Journal:  Eukaryot Cell       Date:  2008-08-08

6.  The plasma membrane proton pump PMA-1 is incorporated into distal parts of the hyphae independently of the Spitzenkörper in Neurospora crassa.

Authors:  Rosa A Fajardo-Somera; Barry Bowman; Meritxell Riquelme
Journal:  Eukaryot Cell       Date:  2013-05-31

Review 7.  Microtubule-dependent mRNA transport in fungi.

Authors:  Kathi Zarnack; Michael Feldbrügge
Journal:  Eukaryot Cell       Date:  2010-05-14

Review 8.  Chitin synthesis and fungal pathogenesis.

Authors:  Megan D Lenardon; Carol A Munro; Neil A R Gow
Journal:  Curr Opin Microbiol       Date:  2010-06-08       Impact factor: 7.934

9.  Subcellular Compartmentalization and Trafficking of the Biosynthetic Machinery for Fungal Melanin.

Authors:  Srijana Upadhyay; Xinping Xu; David Lowry; Jennifer C Jackson; Robert W Roberson; Xiaorong Lin
Journal:  Cell Rep       Date:  2016-03-10       Impact factor: 9.423

10.  Ssh4, Rcr2 and Rcr1 affect plasma membrane transporter activity in Saccharomyces cerevisiae.

Authors:  Jhansi Kota; Monika Melin-Larsson; Per O Ljungdahl; Hanna Forsberg
Journal:  Genetics       Date:  2007-02-07       Impact factor: 4.562

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