2022
DOI: 10.1016/j.ijbiomac.2022.01.176
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Identification of a novel RhoA gene in the sea cucumber Apostichopus japonicus and its immune regulatory function via interacting with miR-2012-5p

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Cited by 5 publications
(11 citation statements)
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“…The enzyme catalyzes the hydrolysis of bacterial cell walls and acts as a nonspecific innate immunity molecule against the invasion of bacterial pathogens ( 33 ). Several studies have also reported that RhoA and Rac1 can regulate phagocytosis in A. japonicus ( 19 ), Marsupenaeus japonicus ( 40 ), and Ctenopharyngodon idella ( 41 ), similar to the phagocytosis results for AjPAK1 in this study. Moreover, the observation that alteration of the expression of either miR-7 or AjPAK1 can induce changes in phagocytic capacity, cellular agglutination, and LZM content in the current study suggests that both miR-7 and AjPAK1 may regulate innate the immune reaction from multiple perspectives in A. japonicus .…”
Section: Discussionsupporting
confidence: 90%
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“…The enzyme catalyzes the hydrolysis of bacterial cell walls and acts as a nonspecific innate immunity molecule against the invasion of bacterial pathogens ( 33 ). Several studies have also reported that RhoA and Rac1 can regulate phagocytosis in A. japonicus ( 19 ), Marsupenaeus japonicus ( 40 ), and Ctenopharyngodon idella ( 41 ), similar to the phagocytosis results for AjPAK1 in this study. Moreover, the observation that alteration of the expression of either miR-7 or AjPAK1 can induce changes in phagocytic capacity, cellular agglutination, and LZM content in the current study suggests that both miR-7 and AjPAK1 may regulate innate the immune reaction from multiple perspectives in A. japonicus .…”
Section: Discussionsupporting
confidence: 90%
“…Consistent with our previous study ( 16 ), the spatial expression results in this study showed that the highest relative expression levels of AjPAK1 transcripts and protein were obtained in coelomocytes (the major immune-related organ of sea cucumbers) of A. japonicus , suggesting a possible immune-related function of AjPAK1. This observation was similar to those obtained in studies of AjC3 ( 23 ), MyD88 , TRAF6 ( 24 ), IRAK-1 ( 25 ), p105 ( 25 , 26 ), Tollip ( 27 , 28 ), Toll ( 29 ), NF-κB/Rel ( 30 ), TLR3 ( 17 , 29 ), IRAK-1 ( 25 ), Toll ( 31 ), AjBHMT ( 32 ) and AjRhoA ( 19 ) in A. japonicus . In addition, relative expression alterations were observed both in miR-7 and AjPAK1 (mRNA and protein) after V. splendidus infection in A. japonicus , indicating an involvement of both miR-7 and AjPAK1 in response to V. splendidus infection.…”
Section: Discussionsupporting
confidence: 88%
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