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紫色色杆菌的蛋白质组学分析及其对压力的适应性

Proteomic analysis of Chromobacterium violaceum and its adaptability to stress.

作者信息

Castro Diogo, Cordeiro Isabelle Bezerra, Taquita Paula, Eberlin Marcos Nogueira, Garcia Jerusa Simone, Souza Gustavo Henrique M F, Arruda Marco Aurélio Zezzi, Andrade Edmar V, Filho Spartaco A, Crainey J Lee, Lozano Luis Lopez, Nogueira Paulo A, Orlandi Patrícia P

机构信息

Instituto Leônidas e Maria Deane - ILMD- Fiocruz, 476 Teresina St., 69057-070, Manaus, AM, Brazil.

Universidade Estadual do Amazonas, 3578 Djalma Batista Av., 69050-010, Manaus, AM, Brazil.

出版信息

BMC Microbiol. 2015 Dec 1;15:272. doi: 10.1186/s12866-015-0606-2.

Abstract

BACKGROUND

Chromobacterium violaceum (C. violaceum) occurs abundantly in a variety of ecosystems, including ecosystems that place the bacterium under stress. This study assessed the adaptability of C. violaceum by submitting it to nutritional and pH stresses and then analyzing protein expression using bi-dimensional electrophoresis (2-DE) and Maldi mass spectrometry.

RESULTS

Chromobacterium violaceum grew best in pH neutral, nutrient-rich medium (reference conditions); however, the total protein mass recovered from stressed bacteria cultures was always higher than the total protein mass recovered from our reference culture. The diversity of proteins expressed (repressed by the number of identifiable 2-DE spots) was seen to be highest in the reference cultures, suggesting that stress reduces the overall range of proteins expressed by C. violaceum. Database comparisons allowed 43 of the 55 spots subjected to Maldi mass spectrometry to be characterized as containing a single identifiable protein. Stress-related expression changes were noted for C. violaceum proteins related to the previously characterized bacterial proteins: DnaK, GroEL-2, Rhs, EF-Tu, EF-P; MCP, homogentisate 1,2-dioxygenase, Arginine deiminase and the ATP synthase β-subunit protein as well as for the ribosomal protein subunits L1, L3, L5 and L6. The ability of C. violaceum to adapt its cellular mechanics to sub-optimal growth and protein production conditions was well illustrated by its regulation of ribosomal protein subunits. With the exception of the ribosomal subunit L3, which plays a role in protein folding and maybe therefore be more useful in stressful conditions, all the other ribosomal subunit proteins were seen to have reduced expression in stressed cultures. Curiously, C. violeaceum cultures were also observed to lose their violet color under stress, which suggests that the violacein pigment biosynthetic pathway is affected by stress.

CONCLUSIONS

Analysis of the proteomic signatures of stressed C. violaceum indicates that nutrient-starvation and pH stress can cause changes in the expression of the C. violaceum receptors, transporters, and proteins involved with biosynthetic pathways, molecule recycling, energy production. Our findings complement the recent publication of the C. violeaceum genome sequence and could help with the future commercial exploitation of C. violeaceum.

摘要

背景

紫色色杆菌(C. violaceum)广泛存在于各种生态系统中,包括使其处于应激状态的生态系统。本研究通过使紫色色杆菌遭受营养和pH应激,然后使用二维电泳(2-DE)和基质辅助激光解吸电离质谱(Maldi质谱)分析蛋白质表达,来评估其适应性。

结果

紫色色杆菌在pH中性、营养丰富的培养基(参考条件)中生长最佳;然而,从应激细菌培养物中回收的总蛋白量总是高于从我们的参考培养物中回收的总蛋白量。在参考培养物中观察到表达的蛋白质多样性(以可识别的2-DE斑点数量表示)最高,这表明应激会降低紫色色杆菌表达的蛋白质总体范围。数据库比对使得55个经Maldi质谱分析的斑点中的43个被鉴定为含有单一可识别的蛋白质。观察到与先前鉴定的细菌蛋白质相关的紫色色杆菌蛋白质存在应激相关的表达变化:DnaK、GroEL-2、Rhs、EF-Tu、EF-P;MCP、尿黑酸1,2-双加氧酶、精氨酸脱亚氨酶和ATP合酶β亚基蛋白,以及核糖体蛋白亚基L1、L3、L5和L6。紫色色杆菌对核糖体蛋白亚基的调控很好地说明了其使细胞机制适应次优生长和蛋白质生产条件的能力。除了在蛋白质折叠中起作用、可能因此在应激条件下更有用的核糖体亚基L3外,在应激培养物中观察到所有其他核糖体亚基蛋白的表达均降低。奇怪的是,还观察到紫色色杆菌培养物在应激下失去其紫色,这表明紫菌素色素生物合成途径受应激影响。

结论

对应激的紫色色杆菌蛋白质组特征的分析表明,营养饥饿和pH应激可导致紫色色杆菌受体、转运蛋白以及参与生物合成途径、分子循环、能量产生的蛋白质的表达发生变化。我们的研究结果补充了最近发表的紫色色杆菌基因组序列,可能有助于未来对紫色色杆菌的商业开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/524e/4666173/7d0306445e76/12866_2015_606_Fig1_HTML.jpg

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