College of Veterinary Medicine, Key Lab for Zoonoses Research, Ministry of Education, Jilin University, Changchun, China.
Research Unit of Key Technologies for Prevention and Control of Virus Zoonoses, Chinese Academy of Medical Sciences, Changchun Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Changchun, China.
J Virol. 2023 Mar 30;97(3):e0174322. doi: 10.1128/jvi.01743-22. Epub 2023 Mar 6.
Type III interferons (IFNLs) have critical roles in the host's innate immune system, also serving as the first line against pathogenic infections of mucosal surfaces. In mammals, several IFNLs have been reported; however, only limited data on the repertoire of IFNLs in avian species is available. Previous studies showed only one member in chicken (chIFNL3). Herein, we identified a novel chicken IFNL for the first time, termed chIFNL3a, which contains 354 bp, and encodes 118 amino acids. The predicted protein is 57.1% amino acid identity with chIFNL. Genetic, evolutionary, and sequence analyses indicated that the new open reading frame (ORF) groups with type III chicken IFNs represent a novel splice variant. Compared to IFNs from different species, the new ORF is clustered within the type III IFNs group. Further study showed that chIFNL3a could activate a panel of IFN-regulated genes and function mediated by the IFNL receptor, and chIFNL3a markedly inhibited the replication of Newcastle disease virus (NDV) and influenza virus . These data collectively shed light on the repertoire of IFNs in avian species and provide useful information that further elucidate the interaction of the chIFNLs and viral infection of poultry. Interferons (IFNs) are critical soluble factors in the immune system, and are composed of 3 types (I, II, and III) that utilize different receptor complexes (IFN-αR1/IFN-αR2, IFN-γR1/IFN-γR2, and IFN-λR1/IL-10R2, respectively). Herein, we identified IFNL from the genomic sequences of chicken and termed it chIFNL3a, located on chromosome 7 of chicken. Phylogenetically clustered with all known types of chicken IFNs, the finding of this IFN is considered a type III IFN. To further evaluate the biological properties of chIFNL3a, the target protein was prepared by the baculovirus expression system (BES), which could markedly inhibit the replication of NDV and influenza viruses. In this study, we uncovered a new interferon lambda splice variant of chicken, termed chIFNL3a, which could inhibit viral replication in cells. Importantly, these novel findings may extend to other viruses, offering a new direction for therapeutic interventions.
III 型干扰素 (IFNLs) 在宿主固有免疫系统中发挥着关键作用,也是抵抗黏膜表面病原体感染的第一道防线。在哺乳动物中,已经报道了几种 IFNLs;然而,关于禽类 IFNL 谱的信息有限。先前的研究表明鸡中只有一个成员(chIFNL3)。在此,我们首次鉴定了一种新型鸡 IFNL,命名为 chIFNL3a,其包含 354bp,编码 118 个氨基酸。预测蛋白与 chIFNL 具有 57.1%的氨基酸同一性。遗传、进化和序列分析表明,新的开放阅读框(ORF)与 III 型鸡 IFNs 一起构成了一种新的剪接变体。与不同物种的 IFNs 相比,新的 ORF 聚集在 III 型 IFNs 组内。进一步的研究表明,chIFNL3a 可以激活一组 IFN 调节基因,并通过 IFNL 受体发挥功能,同时 chIFNL3a 显著抑制新城疫病毒(NDV)和流感病毒的复制。这些数据共同揭示了禽类 IFNs 的谱,并提供了有用的信息,进一步阐明了 chIFNLs 与家禽病毒感染的相互作用。
干扰素 (IFNs) 是免疫系统中重要的可溶性因子,由 3 种类型(I、II 和 III)组成,它们利用不同的受体复合物(IFN-αR1/IFN-αR2、IFN-γR1/IFN-γR2 和 IFN-λR1/IL-10R2)。在此,我们从鸡的基因组序列中鉴定出 IFNL,并将其命名为 chIFNL3a,位于鸡的 7 号染色体上。该干扰素与所有已知类型的鸡 IFNs 聚类,被认为是一种 III 型 IFN。为了进一步评估 chIFNL3a 的生物学特性,我们通过杆状病毒表达系统(BES)制备了目的蛋白,发现该蛋白能显著抑制 NDV 和流感病毒的复制。在这项研究中,我们发现了一种新型鸡干扰素 lambda 剪接变体 chIFNL3a,它能抑制细胞内病毒的复制。重要的是,这些新发现可能扩展到其他病毒,为治疗干预提供了新的方向。