Cargando…

Tandem mass tag labeled quantitative proteomic analysis of differential protein expression on total alkaloid of Aconitum flavum Hand.-Mazz. against melophagus ovinus

Melophagus ovinus disease is a common ectoparasitosis, which can lead to a decrease in animal production performance, product quality, and even death. Aconitum flavum Hand.-Mazz. has many pharmacological activities including insecticidal, heat-clearing, analgesic, and dehumidifying. However, there a...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Xinjian, Yang, Zhen, Zhang, Yujun, Cheng, Feng, Xing, Xiaoyong, Wen, Fengqin, Hu, Yonghao, Chen, Changjiang, Wei, Bin, Bai, Pengxia, Wang, Xuehong, Liu, Yu, Zhang, Hongjuan, Hao, Baocheng, Wang, Shengyi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9365070/
https://www.ncbi.nlm.nih.gov/pubmed/35968012
http://dx.doi.org/10.3389/fvets.2022.951058
_version_ 1784765268904378368
author Wang, Xinjian
Yang, Zhen
Zhang, Yujun
Cheng, Feng
Xing, Xiaoyong
Wen, Fengqin
Hu, Yonghao
Chen, Changjiang
Wei, Bin
Bai, Pengxia
Wang, Xuehong
Liu, Yu
Zhang, Hongjuan
Hao, Baocheng
Wang, Shengyi
author_facet Wang, Xinjian
Yang, Zhen
Zhang, Yujun
Cheng, Feng
Xing, Xiaoyong
Wen, Fengqin
Hu, Yonghao
Chen, Changjiang
Wei, Bin
Bai, Pengxia
Wang, Xuehong
Liu, Yu
Zhang, Hongjuan
Hao, Baocheng
Wang, Shengyi
author_sort Wang, Xinjian
collection PubMed
description Melophagus ovinus disease is a common ectoparasitosis, which can lead to a decrease in animal production performance, product quality, and even death. Aconitum flavum Hand.-Mazz. has many pharmacological activities including insecticidal, heat-clearing, analgesic, and dehumidifying. However, there are few researches focused on the effects and related mechanism of Aconitum flavum Hand.-Mazz. in killing Melophagus ovinus. In this study, 11 alkaloids of Aconitum flavum Hand.-Mazz. were detected, and its total alkaloid activity was determined. The results showed when the total alkaloid concentration was 64 mg/ml and the treatment time was 16 h, the killing rate of Melophagus ovinus reached 100%. Through the observation of the differences in the surface of Melophagus ovinus in each experimental group, it was found that the morphology of the posterior end of the female Melophagus ovinus in the alkaloid treatment group was significantly different from that of the blank and positive control groups, and most of the epidermal tissue was obsessive and missing. Moreover, the enzyme activity determination results of 64 mg/ml group were significantly different when compared with the normal control group, while there was no significant difference in other groups. Then, the Melophagus ovinus gene library was established by the unreferenced genome transcriptome sequencing, the proteomic comparison was performed using tandem mass tag labeled protein detection technology, and finally, the samples were quantitatively analyzed by liquid chromatography-mass spectrometry tandem and bioinformatics methods. Based on the above experimental results, it was speculated that Aconitum flavum Hand.-Mazz. total alkaloids may cause the imbalance of protein disulfide isomerase expressions by affecting the regulation of Hsp40 cellular protein homeostasis and the oxidation of protein disulfide isomerase and related proteins. This would affect the selective recognition of signal sequence, the targeted transport of Sec 61, and the correct folding of the three-dimensional structure of amino acid chain, weakening the clearance of amino acid chains that cannot be correctly folded and eventually resulting in the killing of Melophagus ovinus. This study preliminarily revealed the mechanism of Aconitum flavum Hand.-Mazz. total alkaloids against Melophagus ovinus and provided a theoretical basis for the screening of Melophagus ovinus action targets and the development of new veterinary drugs.
format Online
Article
Text
id pubmed-9365070
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-93650702022-08-11 Tandem mass tag labeled quantitative proteomic analysis of differential protein expression on total alkaloid of Aconitum flavum Hand.-Mazz. against melophagus ovinus Wang, Xinjian Yang, Zhen Zhang, Yujun Cheng, Feng Xing, Xiaoyong Wen, Fengqin Hu, Yonghao Chen, Changjiang Wei, Bin Bai, Pengxia Wang, Xuehong Liu, Yu Zhang, Hongjuan Hao, Baocheng Wang, Shengyi Front Vet Sci Veterinary Science Melophagus ovinus disease is a common ectoparasitosis, which can lead to a decrease in animal production performance, product quality, and even death. Aconitum flavum Hand.-Mazz. has many pharmacological activities including insecticidal, heat-clearing, analgesic, and dehumidifying. However, there are few researches focused on the effects and related mechanism of Aconitum flavum Hand.-Mazz. in killing Melophagus ovinus. In this study, 11 alkaloids of Aconitum flavum Hand.-Mazz. were detected, and its total alkaloid activity was determined. The results showed when the total alkaloid concentration was 64 mg/ml and the treatment time was 16 h, the killing rate of Melophagus ovinus reached 100%. Through the observation of the differences in the surface of Melophagus ovinus in each experimental group, it was found that the morphology of the posterior end of the female Melophagus ovinus in the alkaloid treatment group was significantly different from that of the blank and positive control groups, and most of the epidermal tissue was obsessive and missing. Moreover, the enzyme activity determination results of 64 mg/ml group were significantly different when compared with the normal control group, while there was no significant difference in other groups. Then, the Melophagus ovinus gene library was established by the unreferenced genome transcriptome sequencing, the proteomic comparison was performed using tandem mass tag labeled protein detection technology, and finally, the samples were quantitatively analyzed by liquid chromatography-mass spectrometry tandem and bioinformatics methods. Based on the above experimental results, it was speculated that Aconitum flavum Hand.-Mazz. total alkaloids may cause the imbalance of protein disulfide isomerase expressions by affecting the regulation of Hsp40 cellular protein homeostasis and the oxidation of protein disulfide isomerase and related proteins. This would affect the selective recognition of signal sequence, the targeted transport of Sec 61, and the correct folding of the three-dimensional structure of amino acid chain, weakening the clearance of amino acid chains that cannot be correctly folded and eventually resulting in the killing of Melophagus ovinus. This study preliminarily revealed the mechanism of Aconitum flavum Hand.-Mazz. total alkaloids against Melophagus ovinus and provided a theoretical basis for the screening of Melophagus ovinus action targets and the development of new veterinary drugs. Frontiers Media S.A. 2022-07-27 /pmc/articles/PMC9365070/ /pubmed/35968012 http://dx.doi.org/10.3389/fvets.2022.951058 Text en Copyright © 2022 Wang, Yang, Zhang, Cheng, Xing, Wen, Hu, Chen, Wei, Bai, Wang, Liu, Zhang, Hao and Wang. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Veterinary Science
Wang, Xinjian
Yang, Zhen
Zhang, Yujun
Cheng, Feng
Xing, Xiaoyong
Wen, Fengqin
Hu, Yonghao
Chen, Changjiang
Wei, Bin
Bai, Pengxia
Wang, Xuehong
Liu, Yu
Zhang, Hongjuan
Hao, Baocheng
Wang, Shengyi
Tandem mass tag labeled quantitative proteomic analysis of differential protein expression on total alkaloid of Aconitum flavum Hand.-Mazz. against melophagus ovinus
title Tandem mass tag labeled quantitative proteomic analysis of differential protein expression on total alkaloid of Aconitum flavum Hand.-Mazz. against melophagus ovinus
title_full Tandem mass tag labeled quantitative proteomic analysis of differential protein expression on total alkaloid of Aconitum flavum Hand.-Mazz. against melophagus ovinus
title_fullStr Tandem mass tag labeled quantitative proteomic analysis of differential protein expression on total alkaloid of Aconitum flavum Hand.-Mazz. against melophagus ovinus
title_full_unstemmed Tandem mass tag labeled quantitative proteomic analysis of differential protein expression on total alkaloid of Aconitum flavum Hand.-Mazz. against melophagus ovinus
title_short Tandem mass tag labeled quantitative proteomic analysis of differential protein expression on total alkaloid of Aconitum flavum Hand.-Mazz. against melophagus ovinus
title_sort tandem mass tag labeled quantitative proteomic analysis of differential protein expression on total alkaloid of aconitum flavum hand.-mazz. against melophagus ovinus
topic Veterinary Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9365070/
https://www.ncbi.nlm.nih.gov/pubmed/35968012
http://dx.doi.org/10.3389/fvets.2022.951058
work_keys_str_mv AT wangxinjian tandemmasstaglabeledquantitativeproteomicanalysisofdifferentialproteinexpressionontotalalkaloidofaconitumflavumhandmazzagainstmelophagusovinus
AT yangzhen tandemmasstaglabeledquantitativeproteomicanalysisofdifferentialproteinexpressionontotalalkaloidofaconitumflavumhandmazzagainstmelophagusovinus
AT zhangyujun tandemmasstaglabeledquantitativeproteomicanalysisofdifferentialproteinexpressionontotalalkaloidofaconitumflavumhandmazzagainstmelophagusovinus
AT chengfeng tandemmasstaglabeledquantitativeproteomicanalysisofdifferentialproteinexpressionontotalalkaloidofaconitumflavumhandmazzagainstmelophagusovinus
AT xingxiaoyong tandemmasstaglabeledquantitativeproteomicanalysisofdifferentialproteinexpressionontotalalkaloidofaconitumflavumhandmazzagainstmelophagusovinus
AT wenfengqin tandemmasstaglabeledquantitativeproteomicanalysisofdifferentialproteinexpressionontotalalkaloidofaconitumflavumhandmazzagainstmelophagusovinus
AT huyonghao tandemmasstaglabeledquantitativeproteomicanalysisofdifferentialproteinexpressionontotalalkaloidofaconitumflavumhandmazzagainstmelophagusovinus
AT chenchangjiang tandemmasstaglabeledquantitativeproteomicanalysisofdifferentialproteinexpressionontotalalkaloidofaconitumflavumhandmazzagainstmelophagusovinus
AT weibin tandemmasstaglabeledquantitativeproteomicanalysisofdifferentialproteinexpressionontotalalkaloidofaconitumflavumhandmazzagainstmelophagusovinus
AT baipengxia tandemmasstaglabeledquantitativeproteomicanalysisofdifferentialproteinexpressionontotalalkaloidofaconitumflavumhandmazzagainstmelophagusovinus
AT wangxuehong tandemmasstaglabeledquantitativeproteomicanalysisofdifferentialproteinexpressionontotalalkaloidofaconitumflavumhandmazzagainstmelophagusovinus
AT liuyu tandemmasstaglabeledquantitativeproteomicanalysisofdifferentialproteinexpressionontotalalkaloidofaconitumflavumhandmazzagainstmelophagusovinus
AT zhanghongjuan tandemmasstaglabeledquantitativeproteomicanalysisofdifferentialproteinexpressionontotalalkaloidofaconitumflavumhandmazzagainstmelophagusovinus
AT haobaocheng tandemmasstaglabeledquantitativeproteomicanalysisofdifferentialproteinexpressionontotalalkaloidofaconitumflavumhandmazzagainstmelophagusovinus
AT wangshengyi tandemmasstaglabeledquantitativeproteomicanalysisofdifferentialproteinexpressionontotalalkaloidofaconitumflavumhandmazzagainstmelophagusovinus