1.Roles of phosphatases in pathogen infection: a review.
Pei ZHU ; Xinqiang LI ; Zhenlun LI
Chinese Journal of Biotechnology 2012;28(2):154-163
Phosphatases play a key role not only in cell physiological functions of an organism, but also in host-pathogen interactions. Many studies demonstrated that some Gram-negative pathogenic bacteria could evade host immunity and promote pathogenicity by injecting phosphatases into host cells through type III secretion system. However, there were few reports about pathogenic fungi evading the immunity of hosts. Our researches indicated that the entomogenic fungus Metarhizium anisopliae could dephosphorylate the signal transduction substance of locust humoral immunity specifically in vitro by secreting extracellular protein tyrosine phosphatase, which implied that the fungus might interfere with the immune defense of locust. To provide reference for further studies of the functions of phosphatases, we reviewed the types of phosphatases and their roles in pathogen infection.
Animals
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Fungal Proteins
;
metabolism
;
Fungi
;
enzymology
;
physiology
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Gram-Negative Bacteria
;
enzymology
;
physiology
;
Grasshoppers
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immunology
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microbiology
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Host-Pathogen Interactions
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Metarhizium
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enzymology
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Phosphoric Monoester Hydrolases
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classification
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physiology
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secretion
2.Study on the secondary metabolites of grasshopper-derived fungi Arthrinium sp. NF2410.
Wei LI ; Jing WEI ; Dao-Ying CHEN ; Mei-Jing WANG ; Yang SUN ; Fang-Wen JIAO ; Rui-Hua JIAO ; Ren-Xiang TAN ; Hui-Ming GE
Chinese Journal of Natural Medicines (English Ed.) 2020;18(12):957-960
Two new 2-carboxymethyl-3-hexyl-maleic anhydride derivatives, arthrianhydride A (1) and B (2), along with three known compounds 3-5, were isolated from the fermentation broth of a grasshopper-associated fungus Arthrinium sp. NF2410. The structures of new compounds 1 and 2 were determined based on the analysis of the HR-ESI-MS and NMR spectroscopic data. Furthermore, compounds 1 and 2 were evaluated on inhibitory activity against the enzyme SHP2 and both of them showed moderate inhibitory activity against SHP2.
Anhydrides/pharmacology*
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Animals
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Biological Products/pharmacology*
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Enzyme Inhibitors/pharmacology*
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Fungi/chemistry*
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Grasshoppers/microbiology*
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Molecular Structure
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Protein Tyrosine Phosphatase, Non-Receptor Type 11/antagonists & inhibitors*
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Secondary Metabolism