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In planta engineering of viral RNA replicons: Efficient assembly by recombination of DNA modules delivered by Agrobacterium

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TLDR
The proposed protocol allows a plant with a mixture of two or more agrobacteria carrying specific prefabricated modules to rapidly and inexpensively assemble and test multiple vector/gene combinations, without the need to perform the various engineering steps normally required with alternative protocols.
Abstract
We have developed an efficient, versatile, and user-friendly viral engineering and expression system that is based on in planta assembly of functional viral vectors from separate pro-vector modules. With this new system, instead of supplying a plant cell with a complete viral vector as a mature viral particle, an RNA or a linear DNA molecule, we use agrobacteria to deliver various modules that are assembled inside the cell with the help of a site-specific recombinase. The resulting DNA is transcribed, and undesired elements such as recombination sites are spliced out, generating a fully functional RNA replicon. The proposed protocol allows us, by simply treating a plant with a mixture of two or more agrobacteria carrying specific prefabricated modules, to rapidly and inexpensively assemble and test multiple vector/gene combinations, without the need to perform the various engineering steps normally required with alternative protocols. The process described here is very fast (expression requires 3-4 days); it provides very high protein yield (up to 80% of total soluble protein); more than before, it is carried out using in vivo manipulations; it is based on prefabricated genetic modules that can be developed/upgraded independently; and it is inherently scalable.

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Journal ArticleDOI

A one pot, one step, precision cloning method with high throughput capability.

TL;DR: A cloning strategy called ‘Golden Gate’ cloning was devised that allows to obtain in one tube and one step close to one hundred percent correct recombinant plasmids after just a 5 minute restriction-ligation, thus providing precision for this fundamental process of genetic manipulation.
Journal ArticleDOI

Golden gate shuffling: a one-pot DNA shuffling method based on type IIs restriction enzymes.

TL;DR: It is shown that one round of shuffling using the 27trypsinogen entry plasmids can easily produce the 19,683 different possible combinations in one single restriction-ligation and that expression screening of a subset of the library allows identification of variants that can lead to higher expression levels of trypsin activity.
Journal ArticleDOI

Systemic Agrobacterium tumefaciens-mediated transfection of viral replicons for efficient transient expression in plants.

TL;DR: It is shown here that Agrobacterium–mediated delivery of constructs for the efficient delivery of RNA viral vectors as DNA precursors results in gene amplification in all mature leaves of a plant simultaneously (systemic transfection).
Journal ArticleDOI

Generation of glyco-engineered Nicotiana benthamiana for the production of monoclonal antibodies with a homogeneous human-like N-glycan structure.

TL;DR: RNAi technology was used to obtain a targeted down-regulation of the endogenous beta1,2-xylosyl transferase (XylT) and alpha1,3-fucosyltransferase (FucT) genes in Nicotiana benthamiana, a tobacco-related plant species widely used for recombinant protein expression, providing a robust tool for the production of therapeutically relevant glycoproteins in plants with a humanized N-glycan structure.
Journal ArticleDOI

Rapid high-yield expression of full-size IgG antibodies in plants coinfected with noncompeting viral vectors.

TL;DR: A rapid and indefinitely scalable process for high-level expression of functional full-size mAbs of the IgG class in plants, which allows production of gram quantities of mAbs for research purposes in just several days, and the same protocol can be used on an industrial scale in situations requiring rapid response, such as pandemic or terrorism events.
References
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Journal ArticleDOI

Fluorescent proteins from nonbioluminescent Anthozoa species.

TL;DR: Six fluorescent proteins homologous to the green fluorescent protein (GFP) from Aequorea victoria are cloned, two of which have spectral characteristics dramatically different from GFP, emitting at yellow and red wavelengths.
Journal ArticleDOI

An enhanced transient expression system in plants based on suppression of gene silencing by the p19 protein of tomato bushy stunt virus.

TL;DR: A system based on co-expression of a viral-encoded suppressor of gene silencing, the p19 protein of tomato bushy stunt virus, that prevents the onset of PTGS in the infiltrated tissues and allows high level of transient expression is described.
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Engineered GFP as a vital reporter in plants

TL;DR: It is reported that an extensively modified GFP is a versatile and sensitive reporter in a variety of living plant cells and in transgenic plants, and the codon usage effect might be universal, allowing the design of recombinant proteins with high expression efficiency in evolutionarily distant species such as humans and maize.
Journal ArticleDOI

Viral pathogenicity determinants are suppressors of transgene silencing in Nicotiana benthamiana.

TL;DR: By expressing PVY and CMV‐encoded proteins in a PVX vector, it is shown that the viral suppressors of gene silencing are the HCPro of PVy and the 2b protein of CMV.
Journal ArticleDOI

An Agrobacterium-mediated transient gene expression system for intact leaves

TL;DR: An efficient and reproducible Agrobacterium -mediated transient gene expression system for intact leaf tissue was developed and similar results were obtained with other plant species, such as Phaseolus acutifolius, poplar, and tobacco.
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