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首页> 外文期刊>Fish & Shellfish Immunology >4-Hydroxyphenylpyruvate dioxygenase from sea cucumber Apostichopus japonicus negatively regulates reactive oxygen species production
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4-Hydroxyphenylpyruvate dioxygenase from sea cucumber Apostichopus japonicus negatively regulates reactive oxygen species production

机译:来自海参的4-羟基苯基吡合他样酶,来自海参己酮血吸虫,粳稻对抗性调节活性氧物种生产

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摘要

As a wide distribution molecule, 4-hydroxyphenylpyruvate dioxygenase (4-HPPD) catalyzes the second step in the tyrosine catabolism pathway. This process commonly occurs in all aerobic life forms. The broad distribution of these metabolites suggests that they have an important role in many organisms. A portion of the 4-HPPD homology sequence was also identified in Apostichopus japonicus transcriptome. However, the functional roles of A. japonicus 4-HPPD remain unclear. In the current study, a 4-HPPD homolog was cloned from A. japonicus (designated as AjHPPD). The nucleotide sequence analysis showed that the open reading frame of AjHPPD was 1149 bp and encoded a 382-amino-acid residue polyprotein with glyoxalase_4 (residues 20-133) and glyoxalase (residues 180-335) domains. The spatial expression analysis revealed that AjHPPD was ubiquitously expressed in all examined tissues with large-magnitude in the respiratory tree and was minimally expressed in coelomocytes. Compared with a control group, the significant increase in transcription of AjHPPD mRNA in the Vibrio splendidus-challenged sea cucumber was 2.10-fold (p < 0.01) at 48 h and returned to the normal level at 72 and 96 h. Similarly, compared with a control group, the significant increase in the transcription of AjHPPD mRNA was 3.36-fold (p < 0.01) at 24 h after stimulation with 10 mg mL(-1) of LPS. On the one hand, silencing AjHPPD in vitro could inhibit the expression of pentose phosphate pathway (PPP) flux enzyme glucose-6-phosphate dehydrogenase (G6PD) at the mRNA level and prevent the clearance of reactive oxygen species (ROS) in sea cucumbers. On the other hand, interference of AjHPPD by using specific siRNA can result in the significant promotion of coelomocyte apoptosis with a 1.61-fold increase in vitro. AjHPPD negatively regulated ROS levels by modulating tyrosine catabolism on AjG6PD expression and coelomocyte apoptosis in response to pathogen infection.
机译:作为宽分布分子,4-羟基苯基吡合他水二氧基酶(4-HPPD)催化酪氨酸分解蛋白途径中的第二步。这个过程通常发生在所有有氧寿命形式中。这些代谢物的广泛分布表明它们在许多生物中具有重要作用。在Apostichopus japonicus转录组中也鉴定了4-hppd同源性序列的一部分。然而,A.Paponicus 4-HPPD的功能作用仍然不清楚。在目前的研究中,从A japonicus克隆了4-hppd同源物(指定为ajhppd)。核苷酸序列分析表明,AJHPPD的开放阅读框是1149bp,并用乙醛酸甲酸乙酯(残基20-133)和乙醛酸酶(残基180-335)结构域编码382-氨基酸残基聚丙烯。空间表达分析显示,在呼吸道树中的所有检查组织中普遍地表达AJHPPD,并在核细胞中微小地表达。与对照组相比,普生辉煌型挑战海参中Ajhppd mRNA转录的显着增加为48小时,在48小时内为2.10倍(p <0.01),并在72和96 h处恢复正常水平。类似地,与对照组相比,在用10mg mL(-1)的LPS刺激后24小时,AJHPPD mRNA转录的显着增加是3.36倍(P <0.01)。一方面,在体外沉默Ajhppd可以抑制戊糖磷酸盐途径(PPP)通量酶葡萄糖-6-磷酸脱氢酶(G6PD)的表达,并防止海参中活性氧物种(ROS)的清除。另一方面,通过使用特异性siRNA的AJHPPD的干扰可导致促进促促进胞间细胞凋亡,体外增加1.61倍。 AJHPPD通过调节AJG6PD表达和肾小球菌凋亡的酪氨酸分解代谢和促进病原体感染时对ROS水平产生负面调节的。

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