Literature DB >> 21486142

Protein kinase C is likely to be involved in zoosporogenesis and maintenance of flagellar motility in the peronosporomycete zoospores.

Md Tofazzal Islam1, Andreas von Tiedemann, Hartmut Laatsch.   

Abstract

The motility of zoospores is critical in the disease cycles of Peronosporomycetes that cause devastating diseases in plants, fishes, vertebrates, and microbes. In the course of screening for secondary metabolites, we found that ethyl acetate extracts of a marine Streptomyces sp. strain B5136 rapidly impaired the motility of zoospores of the grapevine downy mildew pathogen Plasmopara viticola at 0.1 μg/ml. The active principle in the extracts was identified as staurosporine, a known broad-spectrum inhibitor of protein kinases, including protein kinase C (PKC). In the presence of staurosporine (2 nM), zoospores moved very slowly in their axis or spun in tight circles, instead of displaying straight swimming in a helical fashion. Compounds such as K-252a, K-252b, and K-252c structurally related to staurosporine also impaired the motility of zoospores in a similar manner but at varying doses. Among the 22 known kinase inhibitors tested, the PKC inhibitor chelerythrine was the most potent to arrest the motility of zoospores at concentrations starting from 5 nM. Inhibitors that targeted kinase pathways other than PKC pathways did not practically show any activity in impairing zoospore motility. Interestingly, both staurosporine (5 nM) and chelerythrine (10 nM) also inhibited the release of zoospores from the P. viticola sporangia in a dose-dependent manner. In addition, staurosporine completely suppressed downy mildew disease in grapevine leaves at 2 μM, suggesting the potential of small-molecule PKC inhibitors for the control of peronosporomycete phytopathogens. Taken together, these results suggest that PKC is likely to be a key signaling mediator associated with zoosporogenesis and the maintenance of flagellar motility in peronosporomycete zoospores.

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Year:  2011        PMID: 21486142     DOI: 10.1094/MPMI-12-10-0280

Source DB:  PubMed          Journal:  Mol Plant Microbe Interact        ISSN: 0894-0282            Impact factor:   4.171


  5 in total

1.  Natural Protein Kinase Inhibitors, Staurosporine, and Chelerythrine Suppress Wheat Blast Disease Caused by Magnaporthe oryzae Triticum.

Authors:  Moutoshi Chakraborty; S M Fajle Rabby; Dipali Rani Gupta; Mahfuzur Rahman; Sanjoy Kumar Paul; Nur Uddin Mahmud; Abdullah Al Mahbub Rahat; Ljupcho Jankuloski; Tofazzal Islam
Journal:  Microorganisms       Date:  2022-06-09

2.  Inhibitory Effects of Macrotetrolides from Streptomyces spp. On Zoosporogenesis and Motility of Peronosporomycete Zoospores Are Likely Linked with Enhanced ATPase Activity in Mitochondria.

Authors:  Md Tofazzal Islam; Hartmut Laatsch; Andreas von Tiedemann
Journal:  Front Microbiol       Date:  2016-11-18       Impact factor: 5.640

3.  Inhibitory Effects of Linear Lipopeptides From a Marine Bacillus subtilis on the Wheat Blast Fungus Magnaporthe oryzae Triticum.

Authors:  Moutoshi Chakraborty; Nur Uddin Mahmud; Dipali Rani Gupta; Fakir Shahidullah Tareq; Hee Jae Shin; Tofazzal Islam
Journal:  Front Microbiol       Date:  2020-04-30       Impact factor: 5.640

4.  Bonactin and Feigrisolide C Inhibit Magnaporthe oryzae Triticum Fungus and Control Wheat Blast Disease.

Authors:  S M Fajle Rabby; Moutoshi Chakraborty; Dipali Rani Gupta; Mahfuzur Rahman; Sanjoy Kumar Paul; Nur Uddin Mahmud; Abdullah Al Mahbub Rahat; Ljupcho Jankuloski; Tofazzal Islam
Journal:  Plants (Basel)       Date:  2022-08-12

Review 5.  Diversity of secondary metabolites from marine Bacillus species: chemistry and biological activity.

Authors:  Muhammad Abdul Mojid Mondol; Hee Jae Shin; Mohammad Tofazzal Islam
Journal:  Mar Drugs       Date:  2013-08-12       Impact factor: 5.118

  5 in total

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