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Improving Protein Quantity and Quality-The Next Level of Plant Molecular Farming

Overview
Journal Int J Mol Sci
Publisher MDPI
Date 2022 Feb 15
PMID 35163249
Authors
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Abstract

Plants offer several unique advantages in the production of recombinant pharmaceuticals for humans and animals. Although numerous recombinant proteins have been expressed in plants, only a small fraction have been successfully put into use. The hugely distinct expression systems between plant and animal cells frequently cause insufficient yield of the recombinant proteins with poor or undesired activity. To overcome the issues that greatly constrain the development of plant-produced pharmaceuticals, great efforts have been made to improve expression systems and develop alternative strategies to increase both the quantity and quality of the recombinant proteins. Recent technological revolutions, such as targeted genome editing, deconstructed vectors, virus-like particles, and humanized glycosylation, have led to great advances in plant molecular farming to meet the industrial manufacturing and clinical application standards. In this review, we discuss the technological advances made in various plant expression platforms, with special focus on the upstream designs and milestone achievements in improving the yield and glycosylation of the plant-produced pharmaceutical proteins.

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References
1.
Schillberg S, Raven N, Spiegel H, Rasche S, Buntru M . Critical Analysis of the Commercial Potential of Plants for the Production of Recombinant Proteins. Front Plant Sci. 2019; 10:720. PMC: 6579924. DOI: 10.3389/fpls.2019.00720. View

2.
Burgyan J, Havelda Z . Viral suppressors of RNA silencing. Trends Plant Sci. 2011; 16(5):265-72. DOI: 10.1016/j.tplants.2011.02.010. View

3.
Margolin E, Chapman R, Meyers A, van Diepen M, Ximba P, Hermanus T . Production and Immunogenicity of Soluble Plant-Produced HIV-1 Subtype C Envelope gp140 Immunogens. Front Plant Sci. 2019; 10:1378. PMC: 6831737. DOI: 10.3389/fpls.2019.01378. View

4.
Shanmugaraj B, Bulaon C, Phoolcharoen W . Plant Molecular Farming: A Viable Platform for Recombinant Biopharmaceutical Production. Plants (Basel). 2020; 9(7). PMC: 7411908. DOI: 10.3390/plants9070842. View

5.
Peyret H, Steele J, Jung J, Thuenemann E, Meshcheriakova Y, Lomonossoff G . Producing Vaccines against Enveloped Viruses in Plants: Making the Impossible, Difficult. Vaccines (Basel). 2021; 9(7). PMC: 8310165. DOI: 10.3390/vaccines9070780. View