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1.
Fish Shellfish Immunol Rep ; 2: 100040, 2021 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-36420506

RESUMO

Hematopoiesis refers to the phenomenon that hematopoietic stem cells (HSCs) continuously form and produce blood cells with multiple functions. In crustacean, the hematopoietic process produces a variety of hemocytes that form the core and basis of cellular and humoral immunity, which is crucial for crustacean to maintain their lives and protect themselves against microbial infection. The expression of many factors, in the form of transcription factors and humoral factors, are altered during hematopoiesis, which are involved in the regulation of hematopoiesis. Meanwhile, there are also factors that, although not directly involved in the HSCs differentiation or hemocytes production and release, play an essential role in maintaining cellular homeostasis. In this review, we summarize current knowledge on the hematopoietic lineage of crustacean, with a particular focus on the molecular regulation of hematopoiesis, including transcriptional regulation, humoral factors involved in the differentiation of HSCs and the maintenance of hematopoietic homeostasis, which contributes to a systematic understanding of the crustacean hematopoiesis.

2.
Dev Comp Immunol ; 116: 103947, 2021 03.
Artigo em Inglês | MEDLINE | ID: mdl-33253753

RESUMO

White spot syndrome virus (WSSV) is currently the most severely viral pathogen for farmed crustaceans such as shrimp and crayfish, which has been causing huge economic losses for crustaceans farming worldwide every year. Unfortunately, study on the molecular mechanisms of WSSV has been restricted by the lack of crustacean cell lines for WSSV propagation as well as the incompletely annotated genomes for host species, resulting in limited elucidation for WSSV pathogenesis at present. In addition to the findings of anti-WSSV response in shrimp, some of novel cellular events involved in WSSV infection have been recently revealed in crayfish, including endocytosis and intracellular transport of WSSV, innate immune pathways in response to WSSV infection, and regulation of viral gene expression by host genes. Despite these advances, many fundamental gaps in WSSV pathogenesis are still remaining, for example, how WSSV genome enters into nucleus and how the progeny virions are fully assembled in the host cell nucleus. In this review, recent findings in WSSV infection mechanism and the antiviral immunity against WSSV in crayfish are summarized and discussed, which may provide us a better understanding of the WSSV pathogenesis as well as new ideas for the target design of antiviral drugs against WSSV in crustaceans farming.


Assuntos
Astacoidea/imunologia , Astacoidea/virologia , Vírus da Síndrome da Mancha Branca 1/fisiologia , Animais , Antivirais/imunologia , Astacoidea/genética , Endocitose , Endossomos/virologia , Regulação da Expressão Gênica , Imunidade Inata , Transdução de Sinais , Vírus da Síndrome da Mancha Branca 1/genética , Vírus da Síndrome da Mancha Branca 1/metabolismo , Vírus da Síndrome da Mancha Branca 1/patogenicidade
3.
Dev Comp Immunol ; 84: 264-272, 2018 07.
Artigo em Inglês | MEDLINE | ID: mdl-29510164

RESUMO

Influenza A virus non-structural-1A binding protein (named as Ns1abp) was originally identified as a host protein from human that bound to the viral NS-1 protein. In our previous study, the expression of an Ns1abp-like gene (denoted as CqNs1abp-like gene) was found to be up-regulated in a transcriptome library from the haematopoietic tissue (Hpt) cells of red claw crayfish Cherax quadricarinatus post white spot syndrome virus (WSSV) infection. To elucidate the role of CqNs1abp-like gene involved in WSSV infection, we cloned the CqNs1abp-like gene in which the open reading frame was 2232 bp, encoding 743 amino acids with two typical domains of one BTB (Broad-Complex, Tramtrack and Bric a brac) domain at N-terminal and six Kelch domains at C-terminal. The gene expression profile showed that the mRNA transcript of CqNs1abp-like gene was widely expressed in all the tested tissues with highest expression in nerve, relatively high expression in Hpt and lowest expression in eyestalk. Importantly, both the WSSV entry and the viral replication were significantly reduced in Hpt cells after gene silencing of CqNs1abp-like gene. By using protein pull-down assay, we found that the recombinant BTB domain, six Kelch domains and CqNs1abp-like intact protein were all bound to the WSSV envelope protein VP28, respectively, in which the BTB domain showed slightly less binding affinity than that of the six Kelch domains or the recombinant intact protein. Besides, the WSSV entry into Hpt cells was clearly decreased when the virus was pre-incubated with the recombinant BTB domain, six Kelch domains, or the recombinant CqNs1abp-like intact protein, respectively, suggesting that the CqNs1abp-like gene was likely to function as a putative recognition molecular towards WSSV infection in a crustacean C. quadricarinatus. Taken together, these data shed new light on the mechanism of WSSV infection and a putatively novel target on anti-WSSV infection in crustacean farming.


Assuntos
Proteínas de Artrópodes/genética , Astacoidea/imunologia , Infecções por Vírus de DNA/imunologia , Hemócitos/fisiologia , Tecido Nervoso/fisiologia , Proteínas Nucleares/genética , Fatores de Transcrição/genética , Vírus da Síndrome da Mancha Branca 1/fisiologia , Animais , Proteínas de Artrópodes/metabolismo , Células Cultivadas , Clonagem Molecular , Humanos , Vírus da Influenza A/fisiologia , Proteínas Nucleares/metabolismo , Domínios Proteicos/genética , Proteínas de Ligação a RNA , Fatores de Transcrição/metabolismo , Transcriptoma , Proteínas do Envelope Viral/metabolismo , Proteínas não Estruturais Virais/metabolismo , Replicação Viral
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