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Articles 1 - 14 of 14
Full-Text Articles in Biotechnology
Flavonol Glucosylation: A Structural Investigation Of The Flavonol Specific 3-O Glucosyltransferase Cp3gt, Aaron S. Birchfield
Flavonol Glucosylation: A Structural Investigation Of The Flavonol Specific 3-O Glucosyltransferase Cp3gt, Aaron S. Birchfield
Electronic Theses and Dissertations
Flavonoid glycosyltransferases (GTs), enzymes integral to plant ecological responses and human pharmacology, necessitate rigorous structural elucidation to decipher their mechanistic function and substrate specificity, particularly given their role in the biotransformation of diverse pharmacological agents and natural products. This investigation delved into a comprehensive exploration of the flavonol 3-O GT from Citrus paradisi (Cp3GT), scrutinizing the impact of a c-terminal c-myc/6x histidine tag on its enzymatic activity and substrate specificity, and successfully achieving its purification to apparent homogeneity. This established a strong foundation for potential future crystallographic and other structure/function analyses. Through the strategic implementation of site-directed mutagenesis, a thrombin …
Methanogen Metabolic Flexibility, Sean R. Carr
Methanogen Metabolic Flexibility, Sean R. Carr
School of Biological Sciences: Dissertations, Theses, and Student Research
Methanogens are obligately anaerobic archaea which produce methane as a byproduct of their respiration. They are found across a wide diversity of environments and play an important role in cycling carbon in anaerobic spaces and the removal of harmful fermentation byproducts which would otherwise inhibit other organisms. Methanogens subsist on low-energy substrates which requires them to utilize a highly efficient central metabolism which greatly favors respiratory byproducts over biomass. This metabolic strategy creates high substrate:product conversion ratios which is industrially relevant for the production of biomethane, but may also allow for the production of value-added commodities. Particularly of interest are …
Isoprene Production From Municipal Wastewater Biosolids By Engineered Archaeon Methanosarcina Acetivorans, Sean Carr, Jared Aldridge, Nicole R. Buan
Isoprene Production From Municipal Wastewater Biosolids By Engineered Archaeon Methanosarcina Acetivorans, Sean Carr, Jared Aldridge, Nicole R. Buan
Department of Biochemistry: Faculty Publications
Wastewater biosolids are a promising feedstock for production of value-added renewable chemicals. Methane-producing archaea (methanogens) are already used to produce renewable biogas via the anaerobic treatment of wastewater. The ability of methanogens to efficiently convert dissolved organic carbon into methane makes them an appealing potential platform for biorefining using metabolic engineering. We have engineered a strain of the methanogen Methanosarcina acetivorans to produce the volatile hemiterpene isoprene in addition to methane. The engineered strain was adapted to grow in municipal wastewater through cultivation in a synthetic wastewater medium. When introduced to municipal wastewater the engineered methanogens were able to compete …
Towards The Synthetic Design Of Camelina Oil Enriched In Tailored Acetyl-Triacylglycerols With Medium-Chain Fatty Acids, Sunil Bansal, Hae Jin Kim, Gunnam Na, Megan E. Hamilton, Edgar B. Cahoon, Chaofu Lu, Timothy P. Durrett
Towards The Synthetic Design Of Camelina Oil Enriched In Tailored Acetyl-Triacylglycerols With Medium-Chain Fatty Acids, Sunil Bansal, Hae Jin Kim, Gunnam Na, Megan E. Hamilton, Edgar B. Cahoon, Chaofu Lu, Timothy P. Durrett
Department of Biochemistry: Faculty Publications
The ability to manipulate expression of key biosynthetic enzymes has allowed the development of genetically modified plants that synthesise unusual lipids that are useful for biofuel and industrial applications. By taking advantage of the unique activities of enzymes from different species, tailored lipids with a targeted structure can be conceived. In this study we demonstrate the successful implementation of such an approach by metabolically engineering the oilseed crop Camelina sativa to produce 3-acetyl-1,2-diacyl-sn-glycerols (acetyl-TAGs) with medium-chain fatty acids (MCFAs). Different transgenic camelina lines that had been genetically modified to produce MCFAs through the expression of MCFA-specific thioesterases and …
Development Of In Vivo Systems For Detecting And Studying Ribosome Inhibition By Small Molecules, Shijie Huang
Development Of In Vivo Systems For Detecting And Studying Ribosome Inhibition By Small Molecules, Shijie Huang
Chemistry and Chemical Biology ETDs
The ribosome is the quintessential antibacterial drug target, with many structurally and mechanistically distinct classes of antibacterial agents acting by inhibiting ribosome function. Detecting and quantifying ribosome inhibition by small molecules and investigating their binding modes and mechanisms of action are critical to antibacterial drug discovery and development efforts. To develop a ribosome inhibition assay that is operationally simple, yet provides direct information on the drug target and the mechanism of action, we have developed engineered E. coli strains harboring an orthogonal ribosome controlled green fluorescent protein reporter that produce fluorescent signal when the O-ribosome is inhibited. As a proof …
A Novel Synthetic Yeast For Enzymatic Biodigester Pretreatment, Tianyu Tan, Mark S. Aronson, Arren Liu, Jill H. Osterhus, Melissa Robins, Suraj Mohan, Erich Leazer, Bowman Clark, Alexa Petrucciani, Katherine Lowery, James Welch, Casey Martin, Helena Lysandrou, Michael E. Scharf, Jenna Rickus
A Novel Synthetic Yeast For Enzymatic Biodigester Pretreatment, Tianyu Tan, Mark S. Aronson, Arren Liu, Jill H. Osterhus, Melissa Robins, Suraj Mohan, Erich Leazer, Bowman Clark, Alexa Petrucciani, Katherine Lowery, James Welch, Casey Martin, Helena Lysandrou, Michael E. Scharf, Jenna Rickus
The Summer Undergraduate Research Fellowship (SURF) Symposium
Lignin, a complex organic polymer, is a major roadblock to the efficiency of biofuel conversion as it both physically blocks carbohydrate substrates and poisons biomass degrading enzymes, even if broken down to monomer units. A pretreatment process is often applied to separate the lignin from biomass prior to biofuel conversion. However, contemporary methods of pretreatment require large amounts of energy, which may be economically uncompelling or unfeasible. Taking inspiration from several genes that have been isolated from termites and fungi which translate to enzymes that degrade lignin, we want to establish a novel “enzymatic pretreatment” system where microbes secrete these …
Ex Vivo Dna Cloning, Adam B. Fisher
Ex Vivo Dna Cloning, Adam B. Fisher
Theses and Dissertations
Genetic engineering of microbes has developed rapidly along with our ability to synthesize DNA de novo. Yet, even with decreasing DNA synthesis costs there remains a need for inexpensive, rapid and reliable methods for assembling synthetic DNA into larger constructs or combinatorial libraries. While technological advances have resulted in powerful techniques for in vitro and in vivo assembly of DNA, each suffers inherent disadvantages. Here, an ex vivo DNA cloning suite using crude cellular lysates derived from E. coli is demonstrated to amplify and assemble DNA containing small sequence homologies. Further, the advantages of an ex vivo approach are …
Artificial Yeast Polarization Controlled By Chemical Gradient, James K. Nolan, Bernard Tao
Artificial Yeast Polarization Controlled By Chemical Gradient, James K. Nolan, Bernard Tao
The Summer Undergraduate Research Fellowship (SURF) Symposium
Engineering synthetic multicellular systems will lead to new synthetic biology technological platforms, inform developmental biology through recapitulation of natural systems and possibly unveil novel morphologies with practical applications not before reached throughout natural history (Maharbiz, 2012). Creating an exogenous molecular circuit that will polarize unicellular cells into “apical” and “basal” domains relative to a substrate plane would fulfill a missing component towards fully multicellular synthetic cellular communities (Maharbiz, 2012). To this end, a PIP3 polarization network previously designed by Chau and associates (Chau, Walter, Gerardin, Tang, Lim 2012) was coupled to the specific activation by niacin of a recombinant …
The Nagoya Protocol And Synthetic Biology Research: A Look At The Potential Impacts, Margo A. Bagley, Arti K. Rai
The Nagoya Protocol And Synthetic Biology Research: A Look At The Potential Impacts, Margo A. Bagley, Arti K. Rai
Faculty Scholarship
This report, prepared for the Synthetic Biology Project at the Woodrow Wilson International Center for Scholars, analyzes the 2010 Nagoya Protocol to the Convention on Biological Diversity and how it may affect U.S. researchers working in the field of synthetic biology. The objective of the Protocol is to provide a transparent framework for the acquisition and sharing of genetic resources on fair and equitable terms that facilitate the conservation of biological diversity and associated traditional knowledge. The report finds significant uncertainty surrounding the temporal scope of the Agreement as well as the types of genetic material that will be covered …
Analysis Of The Threat Of Genetically Modified Organisms For Biological Warfare, Jerry B. Warner, Alan J. Ramsbotham Jr., Ewelina Tunia, James J. Valdes
Analysis Of The Threat Of Genetically Modified Organisms For Biological Warfare, Jerry B. Warner, Alan J. Ramsbotham Jr., Ewelina Tunia, James J. Valdes
Defense and Technology Papers
This study seeks to better understand the evaluation of the potential threats posed by advances in biotechnology, especially genetically modified organisms and synthetic biology. It narrows the scope of consideration into two parts: defining a catastrophic biological attack focused on bioterrorism and that this attack would be restricted to the United States.
Copyright For Engineered Dna: An Idea Whose Time Has Come?, Christopher M. Holman
Copyright For Engineered Dna: An Idea Whose Time Has Come?, Christopher M. Holman
West Virginia Law Review
The rapidly emerging field of synthetic biology has tremendous potential to address some of the most compelling challenges facing our planet by providing clean renewable energy, nutri- tionally-enhanced and environmentally friendly agricultural products, and revolutionary new life-saving cures. However, leaders in the synthetic biology movement have voiced concern that biotechnology's current patent-centric approach to intellec- tual property is in many ways ill-suited to meet the challenge of synthetic biology, threatening to impede follow-on innovation and open access technology. For years, copyright and patent protection for computer software have existed side-by-side, the two forms of intellectual property complementing one another. Numerous …
Unstandard Standardization: The Case Of Biology, Arti K. Rai
Unstandard Standardization: The Case Of Biology, Arti K. Rai
Faculty Scholarship
How applicable are the approaches adopted by information and communication technology standards-setting organizations to biological standards? Most engineering-based industries construct products from standard, well understood components. By contrast, despite the early attachment of the moniker “genetic engineering” to biotechnology, standardization in the biological sciences has been relatively rare.
Synthetic Biology: Caught Between Property Rights, The Public Domain, And The Commons, Arti K. Rai, James Boyle
Synthetic Biology: Caught Between Property Rights, The Public Domain, And The Commons, Arti K. Rai, James Boyle
Faculty Scholarship
Synthetic biologists aim to make biology a true engineering discipline. In the same way that electrical engineers rely on standard capacitors and resistors, or computer programmers rely on modular blocks of code, synthetic biologists wish to create an array of modular biological parts that can be readily synthesized and mixed together in different combinations. Synthetic biology has already produced important results, including more accurate AIDS tests and the possibility of unlimited supplies of previously scarce drugs for malaria. Proponents hope to use synthetic organisms to produce not only medically relevant chemicals but also a large variety of industrial materials, including …
Synthetic Biology: The Intellectual Property Puzzle, Arti K. Rai, Sapna Kumar
Synthetic Biology: The Intellectual Property Puzzle, Arti K. Rai, Sapna Kumar
Faculty Scholarship
Synthetic biology, which operates at the intersection of biotechnology and information technology, has the potential to raise, in a particularly acute manner, the intellectual property problems that exist in both fields. A preliminary patent landscape reveals problematic foundational patents that could, if licensed and enforced inappropriately, impede the potential of the technology. The landscape also reveals a proliferation of patents on basic synthetic biology "parts" that could create transaction cost heavy patent thickets. Both foundational patents and patent thickets are likely to be particularly problematic to the extent they read on standards that synthetic biologists would like to establish. Synthetic …