基因工程开关草中革兰氏阳性菌引起乳腺炎的纤维蛋白原结合蛋白的表达及小鼠抗体的产生。

IF 3.4 3区 生物学 Q1 PLANT SCIENCES Physiology and Molecular Biology of Plants Pub Date : 2024-11-01 Epub Date: 2024-12-05 DOI:10.1007/s12298-024-01528-4
Saima Shafique, Nyla Jabeen, Samra Irum, Ansar Mehmood, Khawaja Shafique Ahmad
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引用次数: 0

摘要

本研究首次全面报道了纤维蛋白原结合蛋白(FIB)抗原在基因工程柳枝稷中的表达。乳腺组织炎症是由金黄色葡萄球菌引起的乳畜主要感染性疾病之一。本研究的目的是开发一种有效和经济的生物工程免疫原来控制发展中国家的乳腺炎。植物是生产抗传染病抗原的生物工厂。本研究通过银纳米粒子介导的核基因转化,在柳枝稷中表达金黄色葡萄球菌乳腺炎抗原靶(FIB),以减轻FIB抗原的口服递送。通过TOPO和Gateway克隆法将FIB基因克隆到表达载体上。通过PCR证实了转基因的转化和整合。计算FIB总可溶性分数的最大浓度,总可溶性蛋白累积达0.5%。对重组FIB蛋白进行纯化和提取。FIB蛋白诱导小鼠体液免疫反应并经口服免疫。为了给药口服乳腺炎免疫原,我们从金黄色葡萄球菌中合成了FIB,并进行了PCR纯化,将纯化的FIB基因克隆到表达载体中。采用pFIB包封Ag-NPs作为纳米载体,在牧草中靶向传递基因。通过核传递成功转化了饲料种子,并通过聚合酶链反应证实了转基因的存在。成功培育了表达FIB抗原的牧草转基因株系。将表达FIB基因的转基因系用于小鼠研究,体内实验表明,柳枝稷作为转基因免疫原,经口服FIB抗原后可在动物血液中产生抗体。乳腺炎抗原在可食用植物中的表达对开发具有成本效益和口服给药的乳性乳腺炎抗原亚基免疫原具有重要意义。
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Expression of mastitis causing fibrinogen binding protein of gram positive bacteria in genetically engineered switchgrass and antibodies production in mice.

The current study is the first comprehensive report on the expression of fibrinogen binding protein (FIB) antigen in the genetically engineered switchgrass. Mammary tissue inflammation is one of the major infectious diseases caused by Staphylococcus aureus in the dairy animals. The aim of the present study is to develop an efficient and economical bioengineered immunogen for controlling mastitis in developing countries. Plant parts are served as bio-factories to produce antigens against infectious diseases. In this research, mastitis antigenic target (FIB) of S. aureus was expressed in switchgrass via Ag-nanoparticle mediated nuclear gene transformation to ease oral delivery of FIB antigen. FIB gene was cloned in expression vector through TOPO and Gateway cloning method. Transformation and integration of transgene was confirmed through PCR. The maximum concentration of total soluble fraction of FIB was calculated, and total soluble protein accumulated up to 0.5%. The recombinant FIB protein was purified and extract was prepared. FIB protein induced humoral immune response in mice and immunized orally. To administration oral immunogens against mastitis, FIB from S. aureus was commercially synthesized and PCR purified, the purified FIB gene was cloned into expression vector. Ag-NPs were encapsulated with pFIB and used as nanocarrier to target delivery of gene in forage grass. Forage seeds were successfully transformed through nuclear delivery and presence of transgene was confirmed through polymerase chain reaction. Transgenic lines of forage grass expressing FIB antigen is successfully developed. The transgenic lines expressing FIB gene were used for mouse study and in-vivo trials showed that switchgrass as transgenic immunogen developed antibodies in blood of animals upon orally delivering the FIB antigen. The expression of mastitis antigen in edible plants could contribute significantly to the development of cost effective and orally administered antigen-based subunit immunogen against dairy mastitis.

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来源期刊
CiteScore
7.10
自引率
0.00%
发文量
126
期刊介绍: Founded in 1995, Physiology and Molecular Biology of Plants (PMBP) is a peer reviewed monthly journal co-published by Springer Nature. It contains research and review articles, short communications, commentaries, book reviews etc., in all areas of functional plant biology including, but not limited to plant physiology, biochemistry, molecular genetics, molecular pathology, biophysics, cell and molecular biology, genetics, genomics and bioinformatics. Its integrated and interdisciplinary approach reflects the global growth trajectories in functional plant biology, attracting authors/editors/reviewers from over 98 countries.
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