Proteomics analysis of differentially abundant proteins in the rohu kidney infected with Edwardsiella tarda

IF 2.2 2区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Nevil Pinto , Mehar Un Nissa , B.S. Yashwanth , A. Sathiyanarayanan , Medha Gayathri J. Pai , Sanjeeva Srivastava , Mukunda Goswami
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Abstract

Edwardsiella tarda (Et) is a zoonotic gram-negative pathogen with a diverse host range, including fish. However, the in-depth molecular mechanisms underlying the response of Labeo rohita (rohu) kidney to Et are poorly understood. A proteomic and histopathological analysis was performed for the rohu kidney after Et infection. The histopathology of the infected rohu kidney showed vacuolation and necrosis. After LC-MS/MS analysis, ~1240 proteins were identified with ≥2 unique peptides. A total of 96 differentially abundant proteins (DAPs) were observed between the control and Et infected group (ET). Metascape and STRING analysis were used for the gene ontology (GO), and protein-protein interaction network (PPI) for the significant pathways of DAPs. In PPI, low-abundant proteins were mapped to metabolic pathways and oxidative phosphorylation (cox5ab, uqcrfs1). High-abundance proteins were mapped to ribosomes (rplp2), protein process in the ER (hspa8), and immune system (ptgdsb.1, muc2). Our label-free proteomic approach in the rohu kidney revealed abundant enriched proteins involved in vesicle coat (ehd4), complement activation (c3a.1, c9, c7a), phagosome (thbs4, mapk1), metabolic reprogramming (hao1, glud1a), wound healing (vim, alox5), and the immune system (psap) after Et infection. A targeted proteomics approach of multiple reaction monitoring (MRM) validated the DAPs (nprl3, ambp, vmo1a, hspg2, muc2, hao1 and glud1a) between control and ET. Overall, the current analysis of histology and proteome in the rohu kidney provides comprehensive data on pathogenicity and the potential immune proteins against Et.

Abstract Image

对感染巴尔达爱德华氏菌的大鹏鸟肾脏中不同含量蛋白质的蛋白质组学分析
Edwardsiella tarda(Et)是一种人畜共患的革兰氏阴性病原体,宿主范围广泛,包括鱼类。然而,人们对大菱鲆(Labeo rohita)肾脏对Et反应的深层分子机制知之甚少。研究人员对大菱鲆肾脏感染Et后进行了蛋白质组学和组织病理学分析。受感染的鲮鱼肾脏的组织病理学表现为空泡化和坏死。经过LC-MS/MS分析,共鉴定出约1240个蛋白质,其中独特的肽段≥2个。在对照组和 ET 感染组(ET)之间共观察到 96 个差异丰度蛋白(DAPs)。基因本体(GO)采用 Metascape 和 STRING 分析,DAPs 的重要通路采用蛋白-蛋白相互作用网络(PPI)分析。在 PPI 中,低丰度蛋白质被映射到代谢途径和氧化磷酸化(cox5ab、uqcrfs1)。高丰度蛋白质被映射到核糖体(rplp2)、ER 中的蛋白质过程(hspa8)和免疫系统(ptgdsb.1、muc2)。我们在罗湖肾脏中采用的无标记蛋白质组学方法发现了大量富集的蛋白质,它们参与了囊泡外壳(ehd4)、补体激活(c3a.1、c9、c7a)、吞噬体(thbs4、mapk1)、代谢重编程(hao1、glud1a)、伤口愈合(vim、alox5)以及Et感染后的免疫系统(psap)。多反应监测(MRM)的靶向蛋白质组学方法验证了对照组和 ET 之间的 DAPs(nprl3、ambp、vmo1a、hspg2、muc2、hao1 和 glud1a)。总之,目前对罗湖肾组织学和蛋白质组的分析提供了有关致病性和抗 ET 潜在免疫蛋白的全面数据。
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来源期刊
CiteScore
5.10
自引率
3.30%
发文量
69
审稿时长
33 days
期刊介绍: Comparative Biochemistry & Physiology (CBP) publishes papers in comparative, environmental and evolutionary physiology. Part D: Genomics and Proteomics (CBPD), focuses on “omics” approaches to physiology, including comparative and functional genomics, metagenomics, transcriptomics, proteomics, metabolomics, and lipidomics. Most studies employ “omics” and/or system biology to test specific hypotheses about molecular and biochemical mechanisms underlying physiological responses to the environment. We encourage papers that address fundamental questions in comparative physiology and biochemistry rather than studies with a focus that is purely technical, methodological or descriptive in nature.
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