Identification and functional analysis of transforming growth factor-ß type III receptor (TßR3) from Scylla paramamosain: The first evidence of TßR3 involved in development and innate immunity in invertebrates.
Fish Shellfish Immunol
; 105: 41-52, 2020 Oct.
Article
em En
| MEDLINE
| ID: mdl-32629101
ABSTRACT
Transforming growth factor-ß type III receptor (TßR3), as a co-receptor of TGF-ß superfamily, plays critical roles in development and growth as well as some disease pathogeneses by presenting ligands to other receptors in vertebrates. However, the identification and functional characterization of TßR3 had not been reported yet in invertebrates. In the present study, TßR3 was first identified and characterized in mud crab Scylla paramamosain. The obtained cDNA length of SpTßR3 was 2, 424 bp with a 1, 854 bp open reading frame, which encoded a putative peptide of 617 amino acids containing a typical transmembrane region and a Zona pellucida (ZP) domain. Real-time PCR results showed that SpTßR3 was predominantly expressed at early embryonic development stage and early postmolt stage, suggesting its participation in development and growth. We report, for the first time in invertebrates, the challenge of both Vibro alginolyticus and Poly (IC) could alter the expression patterns of SpTßR3. Notably, the expression levels of SpIKK, two NF-κB members (SpRelish and SpDorsal), and five antimicrobial peptide genes (SpCrustin and SpALF1-4) were significantly suppressed when SpTßR3 was interfered in vivo. Secondly, the overexpression of SpTßR3 in vitro could activate NF-κB signaling through the dual-luciferase reporter assays. Furthermore, the bacterial clearance assay after SpTßR3 was silenced in vivo highlighted the potential of SpTßR3 in activating the innate immune responses. These results implied the involvement of SpTßR3 in the innate immune responses by regulating the NF-κB pathway. This study first indicated that TßR3 was present in invertebrate, and it participated in not only the development and growth but also the innate immunity of S. paramamosain. It also provided new insights into the origin or evolution of TGF-ß receptors in crustacean species and even in invertebrates.
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Texto completo:
1
Base de dados:
MEDLINE
Assunto principal:
Transdução de Sinais
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Regulação da Expressão Gênica
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Receptores de Fatores de Crescimento Transformadores beta
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Braquiúros
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Imunidade Inata
Tipo de estudo:
Diagnostic_studies
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Prognostic_studies
Limite:
Animals
Idioma:
En
Revista:
Fish Shellfish Immunol
Assunto da revista:
BIOLOGIA
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MEDICINA VETERINARIA
Ano de publicação:
2020
Tipo de documento:
Article
País de afiliação:
China