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Our ability to routinely engineer genetic networks for applications is limited by the scarcity of highly specific and non-cross-reacting (orthogonal) gene regulators with predictable behavior. Though antisense RNAs are attractive contenders for this purpose, quantitative understanding of their specificity and sequence-function relationship sufficient for their design has been limited. Here, we use rationally designed variants of the RNA-IN-RNA-OUT antisense RNA-mediated translation system from the insertion sequence IS10 to quantify >500 RNA-RNA interactions in Escherichia coli and integrate the data set with sequence-activity modeling to identify the thermodynamic stability of the duplex and the seed region as the key determinants of specificity. Applying this model, we predict the performance of an additional ~2,600 antisense-regulator pairs, forecast the possibility of large families of orthogonal mutants, and forward engineer and experimentally validate two RNA pairs orthogonal to an existing group of five from the training data set. We discuss the potential use of these regulators in next-generation synthetic biology applications. 相似文献
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W. G. Thilly D. I. Arkin T. S. Nowak G. N. Wogan 《Biotechnology and bioengineering》1975,17(5):703-712
Unbalanced growth has been studied in HeLa cell cultures maintained in perpetual division synchrony by periodic inhibition of DNA synthesis. Observation of eight independent cellular parameters indicates that once synchrony has been established the degree of unbalanced growth in later cycles is not as great as is observed with the conventional “double-block” technique. This significant diminution of unbalanced growth appears to be related to the significantly shorter periods of inhibition of DNA synthesis used in the resynchronization process. 相似文献
4.
Abundant representation of sharks in the fossil record makes this group asuperb system in which to investigate rates and patterns of molecularevolution and to explore the strengths and weaknesses of phylogeneticinferences from molecular data. In this report, the molecular evolution ofthe cytochrome b gene in sharks is described and the information related toresults from phylogenetic analysis of the data evaluated in the light of aphylogeny derived independently of the molecular data. Across divergentlineages of sharks there is evidence for significant substitution ratevariation, departure from compositional equilibrium, and substantialhomoplasy; nevertheless, the signal of evolutionary history is evident inpatterns of shared transversions and amino acid replacements. 相似文献
5.
Julia Oh Eula Fung Morgan N. Price Paramvir S. Dehal Ronald W. Davis Guri Giaever Corey Nislow Adam P. Arkin Adam Deutschbauer 《Nucleic acids research》2010,38(14):e146
Systems-level analyses of non-model microorganisms are limited by the existence of numerous uncharacterized genes and a corresponding over-reliance on automated computational annotations. One solution to this challenge is to disrupt gene function using DNA tag technology, which has been highly successful in parallelizing reverse genetics in Saccharomyces cerevisiae and has led to discoveries in gene function, genetic interactions and drug mechanism of action. To extend the yeast DNA tag methodology to a wide variety of microorganisms and applications, we have created a universal, sequence-verified TagModule collection. A hallmark of the 4280 TagModules is that they are cloned into a Gateway entry vector, thus facilitating rapid transfer to any compatible genetic system. Here, we describe the application of the TagModules to rapidly generate tagged mutants by transposon mutagenesis in the metal-reducing bacterium Shewanella oneidensis MR-1 and the pathogenic yeast Candida albicans. Our results demonstrate the optimal hybridization properties of the TagModule collection, the flexibility in applying the strategy to diverse microorganisms and the biological insights that can be gained from fitness profiling tagged mutant collections. The publicly available TagModule collection is a platform-independent resource for the functional genomics of a wide range of microbial systems in the post-genome era. 相似文献
6.
Ben Khalaf N De Muylder G Ratnam J Kean-Hooi Ang K Arkin M McKerrow J Chenik M 《Journal of biomolecular screening》2011,16(5):545-551
The use of a high-throughput technique to perform a pilot screen for Leishmania major protein disulfide isomerase (LmPDI) inhibitors identification is reported. In eukaryotic cells, protein disulfide isomerase (PDI) plays a crucial role in protein folding by catalyzing the rearrangement of disulfide bonds in substrate proteins following their synthesis. LmPDI displays similar domain structure organization and functional properties to other PDI family members and is involved in Leishmania virulence. The authors used a method based on the enzyme-catalyzed reduction of insulin in the presence of dithiothreitol. The screen of a small library of 1920 compounds was performed in a 384-well format and led to the identification of 27 compounds with inhibitory activity against LmPDI. The authors further tested the cytotoxicity of these compounds using Jurkat cells as well as their effect on Leishmania donovani amastigotes using high-content analysis. Results show hexachlorophene and a mixture of theaflavin monogallates inhibit Leishmania multiplication in infected macrophages derived from THP-1 cells, although the inhibitory effect on LmPDI enzymatic activity does not necessarily correlate with the antileishmanial activity. 相似文献
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Global explorations of regulatory network dynamics, organization and evolution have become tractable thanks to high-throughput sequencing and molecular measurement of bacterial physiology. From these, a nascent conceptual framework is developing, that views the principles of regulation in term of motifs, modules and games. Motifs are small, repeated, and conserved biological units ranging from molecular domains to small reaction networks. They are arranged into functional modules, genetically dissectible cellular functions such as the cell cycle, or different stress responses. The dynamical functioning of modules defines the organism's strategy to survive in a game, pitting cell against cell, and cell against environment. Placing pathway structure and dynamics into an evolutionary context begins to allow discrimination between those physical and molecular features that particularize a species to its surroundings, and those that provide core physiological function. This approach promises to generate a higher level understanding of cellular design, pathway evolution and cellular bioengineering. 相似文献
9.
Choong IC Serafimova I Fan J Stockett D Chan E Cheeti S Lu Y Fahr B Pham P Arkin MR Walker DH Hoch U 《Bioorganic & medicinal chemistry letters》2008,18(21):5763-5765
The identification of a selective CDK2, 7, 9 inhibitor 4 with improved permeability is described. Compound 4 exhibits comparable CDK selectivity profile to SNS-032, but shows improved permeability and higher bioavailability in mice. 相似文献
10.
Hualan Liu Anthony L. Shiver Morgan N. Price Hans K. Carlson Valentine V. Trotter Yan Chen Veronica Escalante Jayashree Ray Kelsey E. Hern Christopher J. Petzold Peter J. Turnbaugh Kerwyn Casey Huang Adam P. Arkin Adam M. Deutschbauer 《Cell reports》2021,34(9):108789
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