首页> 外文期刊>Taiwan Veterinary Journal >AVIAN INNATE IMMUNITY WITH AN EMPHASIS ON CHICKEN MELANOMA DIFFERENTIATION-ASSOCIATED GENE 5 (MDA5)
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AVIAN INNATE IMMUNITY WITH AN EMPHASIS ON CHICKEN MELANOMA DIFFERENTIATION-ASSOCIATED GENE 5 (MDA5)

机译:禽类自杀免疫力强调鸡黑色素瘤分化相关基因5(MDA5)

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摘要

Avian species have immune system to fight invading pathogens. The immune system comprises innate and adaptive immunity. Innate immunity relies on pattern recognition receptors to sense particular molecules present in pathogens, i.e. pathogen-associated molecular patterns (PAMPs), or danger signals in the environment, i.e. danger-associated molecular patterns (DAMPs). Cytoplasmic retinoic acid-inducible gene I (RIG-I)-like receptors (RLRs) and nucleotide-binding oligomerization domain-like receptors (NLRs) are the sensors recognizing cytoplasmic PAMP and/or DAMP.?Among common avian species, chickens do not have RIG-I whereas ducks and finches do. Therefore, the other RLR member, melanoma differentiation-associated gene 5 (MDA5), is believed to play an important role to recognize intracellular pathogens in chickens. Chicken MDA5 has been identified and its function determined. Chicken MDA5 maintains the same domain architecture compared with MDA5 analogs in other animal species. The expression of chicken MDA5 was upregulated when a synthetic double-stranded RNA (dsRNA), polyriboinosinic:polyribocytidylic acids (poly(I:C)), was transfected into chicken cells, whereas that did not change when cells were incubated with poly(I:C). The enhanced expression of chicken MDA5 in chicken cells upregulated the expression of chicken interferon-β (IFN-β). The infection of dsRNA infectious bursal disease virus (IBDV) in non-immune cells triggered the activation of chicken MDA5 signaling pathway, leading to the production of IFN-β and subsequent response of IFN-stimulated genes. Furthermore, in immune cells like macrophages, chicken MDA5 participated in sensing the infection of IBDV by activating downstream antiviral genes and molecules and modulating adaptive immunity.On the contrary, one of cytoplasmic NLR member, NLR family pyrin domain containing 3 (NLRP3), was cloned and functionally characterized in chicken cells. Chicken NLRP3 conserved the same domain architecture compared with NLRP3 analogs in other animal species. Chicken NLRP3 was highly expressed in kidney, bursa of Fabricius and spleen. The production of mature chicken interleukin 1 β (IL-1β) in chicken macrophages was stimulated by lipopolysaccharide (LPS) treatment followed by short ATP exposure.In summary, chicken MDA5 was a cytoplasmic dsRNA sensor that mediated the production of type I IFN upon ligand engagement, whereas NLRP3 sensed danger signals, such as ATP, in the cytoplasm and cleaved pro-IL-1β to produce mature IL-1β. Chicken MDA5 was not only involved in the activation of innate immune responses in non-immune and immune cells, but it also participated in modulating adaptive immunity in immune cells. Chicken NLRP3 participated in the production of mature chicken IL-1β upon ligand engagement.
机译:禽类具有免疫系统,用于抵抗入侵病原体。免疫系统包括先天性和适应性免疫。先天免疫依赖于模式识别受体感测病原体中存在的特定分子,即病原体相关的分子模式(PAMP),或环境中的危险信号,即危险相关的分子模式(潮湿)。细胞质视黄酸 - 诱导基因I(RIG-I) - 状受体(RLR)和核苷酸结合的低聚域样受体(NLRS)是识别细胞质PAMP和/或潮湿的传感器。?among常见的禽类种类,鸡不有钻井平台,而鸭子和雀科。因此,另一个RLR成员,黑素瘤分化相关基因5(MDA5)被认为在鸡中识别细胞内病原体的重要作用。已识别鸡MDA5及其功能确定。与其他动物物种中的MDA5类似物相比,鸡MDA5保持相同的域架构。当合成的双链RNA(DSRNA),多吡吡吡啶磷酸(Poly(I:C))转染鸡MDA5的表达被转染到鸡细胞中,而当将细胞与聚(i :C)。鸡细胞中鸡MDA5的增强表达上调了鸡干扰素-β(IFN-β)的表达。在非免疫细胞中DsRNA传染性Bursal疾病病毒(IBDV)的感染引发了鸡MDA5信号通路的激活,导致IFN-β的产生和IFN刺激基因的后续响应。此外,在类似巨噬细胞的免疫细胞中,鸡MDA5通过激活下游抗病毒基因和分子和调节自适应免疫感测IBDV的感染。相反,细胞质NLR构件中的一种,含有3(NLRP3)的细胞质NLR构件之一克隆和在鸡细胞中的功能表征。与其他动物物种中的NLRP3类似物相比,鸡NLRP3保存了相同的域架构。鸡NLRP3在肾脏,Fabricius和脾脏的Bursa中高度表达。通过脂多糖(LPS)处理刺激成熟鸡白细胞介素1β(IL-1β),然后刺激血液多糖曝光。摘要,鸡MDA5是一种细胞质DSRNA传感器,介导在配体上介导I IFN的产生。参与,而NLRP3感测到危险信号,例如ATP,在细胞质中,切割的Pro-IL-1β产生成熟的IL-1β。鸡MDA5不仅参与了在非免疫细胞中的先天免疫应答的激活,而且还参与了调节免疫细胞中的适应性免疫。鸡NLRP3参与了配体啮合时成熟的鸡IL-1β的生产。

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