Works (3)

Updated: July 5th, 2023 15:54

2008 journal article

Gene expression enhancement mediated by the 5 ' UTR intron of the rice rubi3 gene varied remarkably among tissues in transgenic rice plants

MOLECULAR GENETICS AND GENOMICS, 279(6), 563–572.

By: J. Lu n, E. Sivamani n, K. Azhakanandam n, P. Samadder n, X. Li* & R. Qu n

author keywords: IME; intron; rubi3 gene promoter; transgenic rice; translation
MeSH headings : 5' Untranslated Regions / chemistry; Gene Expression Regulation, Plant; Genes, Plant; Genes, Reporter; Introns; Oryza / genetics; Plants, Genetically Modified / genetics; Plants, Genetically Modified / metabolism; Polyubiquitin / genetics; Promoter Regions, Genetic; Protein Biosynthesis; RNA, Messenger / metabolism; Tissue Distribution; Transformation, Genetic
TL;DR: Substantial variation in the magnitudes of intron-mediated enhancement of gene expression (IME) among tissues in rice plants is revealed and the importance of using transgenic plants for IME studies is revealed. (via Semantic Scholar)
UN Sustainable Development Goal Categories
15. Life on Land (Web of Science)
Source: Web Of Science
Added: August 6, 2018

2007 article

Amplicon-plus Targeting Technology (APTT) for rapid production of a highly unstable vaccine protein in tobacco plants (vol 64, pg 619, 2007)

Azhakanandam, K., Weissinger, S. M., Nicholson, J. S., Qu, R., & Weissinger, A. K. (2007, July). PLANT MOLECULAR BIOLOGY, Vol. 64, pp. 619–619.

By: K. Azhakanandam n, S. Weissinger n, J. Nicholson n, R. Qu n & A. Weissinger n

Source: Web Of Science
Added: August 6, 2018

2007 journal article

Amplicon-plus targeting technology (APTT) for rapid production of a highly unstable vaccine protein in tobacco plants

Plant Molecular Biology, 63(3), 393–404.

By: K. Azhakanandam n, S. Weissinger n, J. Nicholson n, R. Qu n & A. Weissinger n

MeSH headings : Biotechnology; Capsid Proteins / biosynthesis; Capsid Proteins / genetics; Capsid Proteins / immunology; Gene Expression; Genetic Vectors; Lambdapapillomavirus / genetics; Lambdapapillomavirus / immunology; Plants, Genetically Modified; RNA, Small Interfering / genetics; Recombinant Proteins / biosynthesis; Recombinant Proteins / genetics; Recombinant Proteins / immunology; Rhizobium / genetics; Tobacco / genetics; Vaccines, Subunit / biosynthesis; Vaccines, Subunit / genetics; Viral Vaccines / biosynthesis; Viral Vaccines / genetics
TL;DR: The good yield and short interval from inoculation to harvest characteristic of APTT, combined with the potential for high-throughput achieved by use of the agrospray inoculation protocol, make this system a very promising technology for producing high value recombinant proteins, especially those known to be highly labile, in plants for a wide range of applications. (via Semantic Scholar)
Source: NC State University Libraries
Added: August 6, 2018

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