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首页> 外文期刊>FEMS Microbiology Letters >Homologous overexpression of NpDps2 and NpDps5 increases the tolerance for oxidative stress in the multicellular cyanobacterium Nostoc punctiforme
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Homologous overexpression of NpDps2 and NpDps5 increases the tolerance for oxidative stress in the multicellular cyanobacterium Nostoc punctiforme

机译:NPDPS2和NPDPS5的同源过表达增加了多细胞蓝藻鼻间乳头状点状氧化应激的耐受性

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The filamentous cyanobacterium Nostoc punctiforme has several oxidative stress-managing systems, including Dps proteins. Dps proteins belong to the ferritin superfamily and are involved in abiotic stress management in prokaryotes. Previously, we found that one of the five Dps proteins in N. punctiforme, NpDps2, was critical for H2O2 tolerance. Stress induced by high light intensities is aggravated in N. punctiforme strains deficient of either NpDps2, or the bacterioferritin-like NpDps5. Here, we have investigated the capacity of NpDps2 and NpDps5 to enhance stress tolerance by homologous overexpression of these two proteins in N. punctiforme. Both overexpression strains were found to tolerate twice as high concentrations of added H2O2 as the control strain, indicating that overexpression of either NpDps2 or NpDps5 will enhance the capacity for H2O2 tolerance. Under high light intensities, the overexpression of the two NpDps did not enhance the tolerance against general light-induced stress. However, overexpression of the heterocyst-specific NpDps5 in all cells of the filament led to a higher amount of chlorophyll-binding proteins per cell during diazotrophic growth. The OENpDps5 strain also showed an increased tolerance to ammonium-induced oxidative stress. Our results provide information of how Dps proteins may be utilised for engineering of cyanobacteria with enhanced stress tolerance.
机译:丝状蓝杆菌骨膜杆菌皮蛋白斑块状有几种氧化应激管理系统,包括DPS蛋白。 DPS蛋白属于铁蛋白超家族,参与原核生物中的非生物胁迫管理。以前,我们发现,N.Pncteriforme的五种DPS蛋白中的一种NPDPS2对H2O2耐受性至关重要。在NPDPS2的NPDLES2或菌丝状NPDPS5的NPCRIEMEN菌株中加剧了由高光强度引起的应力。在这里,我们研究了NPDPS2和NPDPS5的能力,以通过在N.Pncteriforme中的这两种蛋白质的同源过表达来增强应力耐受性。发现两个过表达菌株耐受两倍的加入H 2 O 2作为对照菌株,表明NPDPS2或NPDPS5的过表达将增强H 2 O 2耐受的能力。在高光强度下,两个NPDP的过表达并未增强抗普通光引起的应力的耐受性。然而,在长丝的所有细胞中,杂物特异性NPDPS5的过度表达导致在虚拟营养生长期间每种细胞的叶绿素结合蛋白较高。 OENPDPS5菌株还显示出对铵诱导的氧化应激的耐受性增加。我们的结果提供了如何利用DPS蛋白的信息用于具有增强的应力耐受性的蓝细菌。

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