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1.
The toll-like receptors (TLRs) are an important gene family in host innate immunologic surveillance. The TLR22 gene is an essential member of the TLRs that is only found in aquatic animals and has been detected in some bony fish. Here, a TLR22 homolog, EcTLR22, was characterized in the orange-spotted grouper (Epinephelus coioides) via homology cloning. The 3321 bp full-length cDNA sequence of EcTLR22 was obtained, which included an open reading frame of 2880 bp encoding a putative peptide of 960 amino acids containing three highly typical domains with the characteristics of TLR family members. The deduced amino acid sequence of EcTLR22 showed a relatively high similarity to flounder TLR22. Phylogenetic analysis showed that the orange-spotted grouper TLR22 sequence was clustered with those of Perciforme, such as flounder and croaker. Real-time quantitative PCR analysis revealed broad expression of EcTLR22, with relatively high expression detected in the head kidney, trunk kidney, spleen, peripheral blood leukocytes (PBLs) and heart of orange-spotted grouper. After injection with Vibrio alginolyticus, there was significant up-regulation of the expression of EcTLR22 in the spleen. In evaluating unstimulated/stimulated head kidney leukocytes and spleen leukocytes, a significant increase in EcTLR22 mRNA expression was detected, which implied a sensitive immune response. Furthermore, four important molecules for signal transduction, MyD88, TRIF, TNF-α and IRF3, were chosen to analyze the role of the EcTLR22 signaling pathway in anti-pathogen responses. Upon LPS or Poly I:C challenge, expression of the four genes was induced, with an increasing tendency detected in head kidney leukocytes, suggesting that the four genes might work with EcTLR22 in host defense against pathogenic microbes.  相似文献   

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三重基序蛋白25 (Tripartite motif-containing protein 25, TRIM25)属于E3泛素连接酶家族, 在先天免疫反应中发挥重要作用。为研究TRIM25基因在大黄鱼(Larimichthys crocea)先天抗病毒免疫反应中的作用, 研究鉴定并克隆大黄鱼TRIM25基因(命名为LcTRIM25)。LcTRIM25基因编码序列2097 bp (GenBank登录号: MK327541), 编码698个氨基酸。蛋白结构域预测发现LcTRIM25包括保守的RING结构域、B-box2结构域、Coiled-coil结构域和可变的C末端PRY/SPRY结构域。多序列比对以及系统进化树分析表明LcTRIM25基因与斜带石斑鱼同源性高, 与哺乳动物、爬行动物、两栖动物和鸟类同源性相对低, 这说明不同物种受到来自环境不同的选择压力, 导致进化程度不同。应用实时荧光定量PCR方法分析大黄鱼TRIM25基因的表达水平。结果分析发现LcTRIM25基因在健康大黄鱼的9个组织中均有广泛表达, 且在肝脏中表达量最高, 在心脏中表达量最低。在poly(I:C)刺激后, 在外周血、头肾、脾脏和肝脏中LcTRIM25基因表达量迅速且明显上调, 均出现上升达到峰值后下降的趋势。LcTRIM25基因表达量在头肾和脾脏中6h达到最高表达量, 在肝脏中12h达到峰值, 外周血中在24h达到最高表达量。上述结果表明, 不同组织中LcTRIM25基因表达模式具有差异性。研究结果推测大黄鱼TRIM25基因参与抗病毒免疫反应且发挥十分关键的作用, 为进一步了解大黄鱼抗病毒免疫机制提供理论基础。  相似文献   

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A CXCL13-like chemokine cDNA was isolated from large yellow croaker (Pseudosciaena crocea) by expressed sequence tag (EST) analysis (LycCXCL13). The full-length cDNA of LycCXCL13 is 796 nucleotides (nt) encoding a protein of 97 amino acids (aa), with a putative molecular weight of 10.7 kDa. The deduced LycCXCL13 contains a 24-aa signal peptide and a 73-aa mature polypeptide, which possesses the typical arrangement of four cysteines as found in other known CXC chemokines (C25, C27, C52 and C68). It shares 35, 36 and 39% aa sequence identities to green puffer CXCL13-like, Atlantic salmon CXCL13 and Japanese flounder CXCL13 chemokines, and 24–29% identities to CXCL13 chemokines in mammals, respectively. Phylogenetic analysis showed that LycCXCL13 is more closely related to the CXCL13 subgroup than to any other CXC chemokine subgroups. LycCXCL13 gene was constitutively expressed in all tissues examined, except for intestine. Upon induction with poly(I:C) or inactivated trivalent bacterial vaccine, LycCXCL13 gene expression was significantly up-regulated in spleen, head kidney, heart and gills at 24 h post-injection. Real-time PCR results showed that LycCXCL13 gene expression reached peak level in spleen and head kidney at 12 h after induction by poly(I:C), while its expression increased to the highest level in head kidney at 24 h or in spleen at 48 h by bacterial vaccine. Recombinant LycCXCL13 protein produced in E. coli BL21 exhibited obvious chemotaxis to the peripheral blood leucocytes (PBLs) from large yellow croaker. These results suggest that LycCXCL13 may be involved in inflammatory responses as well as homeostatic processes in large yellow croaker.  相似文献   

7.
Complement component 1 inhibitor (C1INH) is a crucial protein in controlling activation of many plasma mediator pathways and can directly interact with Gram negative bacteria. The full-length cDNA of lycC1INH gene was identified from the large yellow croaker. It is of 2046 nucleotides (nt) encoding a protein of 599 amino acids, with a 5′-untranslated region of 99 nt and a 3′-untranslated region of 147 nt including the poly (A) tail. The deduced protein contains a C-terminal serpin (serine protease inhibitor) domain, and two N-terminus immunoglobulin domains without significant homology to other species. Western blot analysis of the protein expression showed that the expression of lycC1INH was obviously up-regulated in liver, spleen and head kidney of the fish challenged by attenuated live Vibrio anguillarum strain. This indicated that lycC1INH might be involved in the immune response of large yellow croaker to bacterial challenge.  相似文献   

8.
We identified and characterized the Japanese flounder (Paralichthys olivaceus) inhibitor kappa B alpha (JFIKBA) cDNA. The JFIKBA cDNA contains an open reading frame of 960bp encoding 320 amino acid residues. JFIKBA contains 6 ankyrin repeats in the central coding region. Expression studies by RT-PCR showed constitutive expression of the JFIKBA gene in several Japanese flounder tissues (brain, muscle, gill, heart, kidney, liver, spleen and intestine). Moreover, expression of JFIKBA mRNA was induced in kidney by LPS stimulation. To investigate the role of JFIKBA, we constructed a recombinant plasmid expressing the JFIKBA coding region under the control of the cytomegalovirus (CMV) promoter. Over-expression of the JFIKBA gene in the Japanese flounder cultured cell line derived from kidney, suppressed the expression of the TNF alpha gene with lipopolysaccharide stimulation. These results indicated that JFIKBA has an important role in the innate immune system, especially in the signaling of the cytokine network.  相似文献   

9.
A cDNA containing the gene for Japanese flounder IgD consisted of 3240 bp encoding 998 amino acid residues. The amino acid sequence of the constant region of Japanese flounder IgD shares 38-80% identity with the sequences of previously reported teleost IgDs. The structure of the constant region of Japanese flounder IgD, which contains the micro1, delta1, delta2, delta3, delta4, delta5, delta6, delta7, and TM regions, is similar to the structures of the constant regions of the IgDs of channel catfish and Atlantic salmon. Southern blot hybridisation showed that the Japanese flounder IgD gene exists as a single locus. The Japanese flounder IgD gene was mainly detected in peripheral blood leucocytes (PBLs) and small amounts were detected in the spleen, head and trunk kidney, although IgM mRNA was detected in similar amounts in PBLs, the head kidney, and spleen. The copy number of IgM mRNA in Japanese flounder PBL was 56-fold higher than that of IgD.  相似文献   

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Two distinct CD3 homologue cDNAs, CD3-1 and CD3-2, were isolated from a Japanese flounder leukocyte cDNA library. CD3-1 consisted of 961 bp encoding 178 amino acid residues, and CD3-2 consisted of 927 bp encoding 182 amino acid residues. The two deduced amino acid sequences had an identity of 95.1%, and neither had N-linked glycosylation sites. The identities between the Japanese flounder CD3s and previously reported CD3s (CD3 epsilon, CD3 gamma, or CD3 delta) of Xenopus laevis, chicken, and various mammals were approximately 25%. The Japanese flounder CD3s had an extracellular domain, a CXXCXE motif, and an immunoreceptor tyrosine-based activation motif (ITAM), each of which are important characteristics of CD3 chains. Furthermore, the positions of four cysteine residues in the extracellular domain were preserved in both of the Japanese flounder CD3s. A phylogenetic tree based on the amino acid sequences confirmed that the Japanese flounder CD3s are closer to CD3 epsilon than to CD3 gamma and CD3 delta. However, the gene structure of Japanese flounder CD3 is identical to the chicken and Xenopus CD3 gamma/delta genes and the mammalian CD3 delta gene. Southern blot hybridization and the DNA sequence of the CD3 gene of homocloned Japanese flounder indicated that the CD3 gene exists as a single copy. Southern blot hybridization also showed the presence of a polymorphic variant of Japanese flounder CD3. An RT-PCR analysis detected Japanese flounder CD3 mRNA in several organs that contained lymphocytes. The proportion of CD3-positive cells in the peripheral blood leukocytes was 34.9%.  相似文献   

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We cloned the cDNAs and genes of two different types of toll-like receptors from Japanese flounder. The results of homology searches suggested that these genes (designated JF-TLR2 and JF-TLR22) are homologues of human TLR2 and fugu TLR22, respectively. The cDNAs of JF-TLR2 and JF-TLR22 encoded 818 and 961 amino acid residues, respectively. JF-TLR2 and JF-TLR22 contained two distinct structural/functional motifs of the TLR family, such as a leucine-rich repeat (LRR) domain in the extracellular portion and a toll/interleukin-1 receptor (TIR) domain in the intracellular portion. The genes of JF-TLR2 and JF-TLR22 consisted of 12 exons (4.9 kb in total length) and four exons (4.3 kb in total length), respectively. The first exon of each gene is a non-coding exon. Southern blot hybridization indicated that both JF-TLR2 and JF-TLR22 exist as single copies in the genome. These genes were mainly expressed in peripheral blood leukocytes (PBLs) and weakly expressed in PBL-rich organs such as kidney, spleen and gill. Expression of these genes was induced by both peptidoglycan and polyI:C, although the number of JF-TLR-expressing cells were not changed after induction. All of these results suggest that they are involved in the innate immune system.  相似文献   

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为研究低氧诱导因子1α(Hypoxia-inducible factor-1α, HIF-1α)在鱼类免疫应答中的作用, 研究克隆得到了大黄鱼(Larimichthys crocea)HIF-1α基因(LcHIF-1α)的cDNA序列, 其开放阅读框全长2256个核苷酸, 编码一个751个氨基酸的蛋白。通过氨基酸序列比对发现, LcHIF-1α蛋白具有5个典型的功能结构域, 包括1个helix-loop-helix(HLH)结构域, 2个PAS结构域, 1个DNA结合结构域(HIF-1)和1个羧基端反式激活结构域(HIF-1a_CTAD)。系统进化分析显示, LcHIF-1α和其他硬骨鱼类HIF-1α聚成一支, 与两栖类、鸟类和哺乳类HIF-1α的亲缘关系相对较远。序列分析结果表明, LcHIF-1α具有保守的特征结构域, 预示着其功能可能与哺乳动物HIF-1α类似。荧光定量PCR结果显示, LcHIF-1α在所检测的健康大黄鱼各个组织中都有表达, 在溶藻弧菌(Vibrio alginolyticus)感染后, 大黄鱼脾脏和头肾组织中的LcHIF-1α表达水平显著上调, 达到峰值时分别上升了6.8倍和2.9倍。此外, LcHIF-1α在大黄鱼的3种免疫细胞(中性粒细胞、巨噬细胞和淋巴细胞)中也都有表达, 在中性粒细胞和巨噬细胞中的表达量相对较高; 在脂多糖(LPS)诱导后, 中性粒细胞和巨噬细胞中LcHIF-1α的表达量显著增加, 峰值分别是对照组的2.6倍和1.8倍, 这些结果表明LcHIF-1α可能参与调控大黄鱼抗细菌免疫应答。  相似文献   

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Chemokines are small, secreted cytokine peptides that have the ability to recruit a wide range of immune cells to sites of infection and disease. A novel CXC chemokine was obtained from Japanese flounder Paralichthys olivaceus. This chemokine cDNA contains an open reading frame of 333 nucleotides encoding 111 amino acid residues containing four conserved cysteine residues. The gene is composed of four exons and three introns as are those of mammalian and fish CXC chemokines. Results of homology and phylogenetic analysis revealed that the Japanese flounder CXC chemokine is closest to CXCL13 subgroup. The gene was expressed in immune-related organs, including head kidney, trunk kidney, spleen and peripheral blood leukocytes (PBLs). Japanese flounder CXC chemokine gene expression was observed at 3 and 6h after induction by LPS, but not at 3 and 6h after induction by poly I:C. These results suggest that the Japanese flounder CXC chemokine is probably associated with inflammatory as well as homeostatic functions.  相似文献   

17.
The NK-lysin cDNA of Japanese flounder, Paralichthys olivaceus, consists of 657bp, containing an open reading frame (ORF) of 444bp, which encodes 147 amino acid residues. The amino acid sequence of Japanese flounder NK-lysin has 21% identity to porcine NK-lysin and bovine NK-lysin, 23% to equine NK-lysin, and 46% to zebrafish NK-lysin-like protein. Multiple alignments of Japanese flounder NK-lysin and other known saposin-like proteins revealed that the six cysteine residues important for structural folding are completely conserved. The Japanese flounder NK-lysin gene is approximately 2kb and consists of five exons and four introns. Japanese flounder NK-lysin mRNA constitutive expression was mainly detected in gills, heart, head kidney, intestines, peripheral blood leukocytes (PBLs), spleen and trunk kidney, and was detected at low levels in liver, muscle and ovary. However, expression was not detected in brain, skin and stomach of apparently healthy Japanese flounder. Gene expression of Japanese flounder NK-lysin was not inducible by lipopolysaccharide (LPS) treatment. A synthesized NK-lysin peptide, consisting of 27 amino acid residues, showed antimicrobial activity against Escherichia coli, Klebsiella pneumoniae, Pseudomonas aeruginosa, and Photobacterium damselae subsp. piscicida.  相似文献   

18.
In mammals, interferon-inducible protein 56 (IFI56) has been considered to play a role in mediating inhibition of viral replication and cell growth, and possibly in mediating cell apoptosis. Here, we reported the cloning of an IFI56 homologue from the spleen of large yellow croaker, a marine fish (LycIFI56). The complete cDNA of LycIFI56 gene is 1628 nucleotides (nt) encoding a protein of 437 amino acids (aa), with a putative molecular weight of 50.8 kDa. The deduced LycIFI56 protein has a high-level homology with all members of IFIT (IFN-inducible proteins with TPR domain) family, and its 9 putative TPR motifs all locate the corresponding position of these IFIT proteins. Phylogenetic analysis showed that five fish IFIT members form a unique clad independent of mammalian homologues, reflecting a distant evolutionary relationship from mammals. LycIFI56 gene was constitutively expressed in various tissues examined, such as gills, intestine, liver, kidney, heart, spleen, muscle and blood. Upon induction with poly(I:C), LycIFI56 gene expression is obviously up-regulated in spleen, gills, intestine, liver and kidney at 24 h post-induction, suggesting that LycIFI56 may be involved in the immune response induced by poly(I:C). Analysis of the expression kinetics of LycIFI56 and IRF1 genes revealed that the up-regulation of LycIRF-1 expression by poly (I:C) was apparently earlier than that of LycIFI56. These results would facilitate a better understanding of the expression regulation of fish IFI56 gene, and of its roles in immunity of bony fish.  相似文献   

19.
Toll-like receptors (TLRs) are essential for activation of the innate immune system in response to invading pathogens. TLR14, which is unique to fish, has been identified in several fish species, but its function is unclear. In this study, Japanese flounder (Paralichthys olivaceus) TLR14 gene (JfTLR14) was cloned and its expression profiles were analyzed after infection with viral hemorrhagic septicemia virus, gram-positive Streptococcus iniae and gram-negative Edwardsiella tarda. The coding region of JfTLR14 cDNA was 2,607 bp, encoding 878 amino acid residues. JfTLR14 was highly expressed in head kidney of healthy flounder. In response to infection with VHSV and S. iniae, the JfTLR14 gene was up-regulated at only 1 day post-infection (dpi). However, E. tarda infection increased JfTLR14 gene expression from 1 to 6 dpi. These results imply that JfTLR14 participates more in the immune response against E. tarda infection than in the immune responses to other pathogen infections.  相似文献   

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为了研究自噬相关基因ATG10(Autophagy related gene 10)在鱼类免疫应答中的功能, 研究克隆了大黄鱼(Larimichthys crocea)ATG10基因(LcATG10)的cDNA序列, 其开放阅读框全长747个核苷酸, 编码248个氨基酸的蛋白, 包含1个Autophagy_act_C结构域。系统进化分析显示, LcATG10和其他硬骨鱼类ATG10聚成一支, 与金头鲷和石斑鱼ATG10亲缘关系最近。LcATG10在所检测的正常大黄鱼各组织中都有表达。在病毒类似物poly (I:C)刺激后, 大黄鱼脾脏和头肾组织中LcATG10的表达水平显著上调, 分别在12h和6h达到峰值(9.4和5.9倍)。LcATG10在大黄鱼头肾细胞系(LYCK)、原代巨噬细胞、淋巴细胞和粒细胞中也均有表达, 在原代粒细胞中的表达量相对较高; 在poly (I:C)刺激后, 大黄鱼原代头肾粒细胞和LYCK细胞中LcATG10的表达水平显著上调。过表达LcATG10的鲤上皮瘤(Epithelioma papulosum cyprinid, EPC)细胞受鲤春病毒血症病毒(Spring viremia of carp virus, SVCV)感染48h后, 细胞病变效应(Cytopathic effects, CPEs)明显低于对照组; 细胞培养上清中SVCV病毒滴度为103.55 TCID50/mL, 显著少于对照组; SVCV标志基因SVCV- G、SVCV-M和SVCV- P的表达水平也显著低于对照组, 分别是对照组的0.022、0.015和0.022倍。这些研究结果表明LcATG10在大黄鱼抗病毒免疫应答中发挥作用, 为深入研究自噬在大黄鱼抗病毒免疫中的分子机制奠定了基础。  相似文献   

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