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Novel autoprocessing domains for stoichiometric protein co-expression in plants.

机译:植物中化学计量蛋白共表达的新型自动加工域。

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摘要

Coordinate expression of multiple proteins in plants plays important roles in both fundamental research and commercial practice in plant biotechnology. However, current technologies amenable to precise, efficient and stoichiometric multi-protein expressions are not yet available. This study aims to advance current state-of-the-art in multi-protein co-expression by developing novel polyprotein-based expression vector systems. These vectors enable stoichiometric expression of multiple proteins from a single open reading frame (ORF) that encodes a polyprotein precursor which is composed of multiple proteins connected by an autoprocessing domain. The unique autoprocessing domains allow individual proteins to be separated from the polyprotein precursor via either co-translational or post-translational cleavage by endogenous host proteases or self-catalytic cleavage activity. As a result, nearly stoichiometric expression of multiple proteins can be achieved using a single expression cassette. In this study, three independent polyprotein cassettes mediated by respective autoprocessing domains: (1) kex2p-like protease substrate sequence, (2) dual-intein and (3) intein-FMDV2A domain, were devised and investigated for coordinate co-expression of multiple proteins in plants. Efficient release of individual protein moiety was demonstrated in tobacco cells as well as in different plant species using immunoblotting analysis. Cellular cleavage mechanisms of the polyprotein precursors were elucidated by N-terminal amino acid sequencing along with mass spectrometry analysis. Functionality of released proteins was characterized by fluorescence spectroscopy and bioactivity assays. Specific cellular targeting of released proteins can be achieved by incorporation of suitable signal sequences. Collectively, our results have successfully demonstrated the utility of different engineered autoprocessing domains for efficient co-expression of multiple proteins from novel polyprotein vectors. This technology should be highly useful in a wide range of applications, from improving fundamental studies of molecular mechanisms, to enhance crop yield, stress/disease tolerance, nutritional values, and production of high-value proteins.
机译:植物中多种蛋白质的协同表达在植物生物技术的基础研究和商业实践中均起着重要作用。但是,尚无适用于精确,高效和化学计量的多蛋白表达的当前技术。这项研究旨在通过开发新型的基于多蛋白的表达载体系统来推进当前在多蛋白共表达中的最新技术。这些载体能够从一个开放阅读框(ORF)进行化学计量表达,该开放阅读框编码一个多蛋白前体,该前体由通过自动加工域连接的多个蛋白组成。独特的自动加工结构域允许通过内源宿主蛋白酶的共翻译或翻译后切割或自催化切割活性将单个蛋白质与多蛋白前体分离。结果,使用单个表达盒可以实现多种蛋白质的近化学计量表达。在这项研究中,设计并研究了由各自的自动加工域介导的三个独立的多蛋白盒:(1)kex2p样蛋白酶底物序列,(2)双intein和(3)intein-FMDV2A域。植物中的蛋白质。使用免疫印迹分析在烟草细胞以及不同植物物种中证明了单个蛋白质部分的有效释放。通过N端氨基酸测序和质谱分析阐明了多蛋白前体的细胞裂解机制。通过荧光光谱和生物活性测定来表征释放的蛋白质的功能。通过掺入合适的信号序列可以实现释放蛋白的特定细胞靶向。总的来说,我们的结果已经成功地证明了不同工程化的自动加工域对于从新型多蛋白载体有效共表达多种蛋白的实用性。从改进分子机制的基础研究到增强作物产量,胁迫/疾病耐受性,营养价值和高价值蛋白质的生产,这项技术在广泛的应用中应该是非常有用的。

著录项

  • 作者

    Zhang, Bei.;

  • 作者单位

    University of Hawai'i at Manoa.;

  • 授予单位 University of Hawai'i at Manoa.;
  • 学科 Botany.;Plant sciences.;Molecular biology.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 176 p.
  • 总页数 176
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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