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Imagine a hypothetical gene expression device that always measures the expression of a gene as being zero.
This just in time gene expression device is often used for the control of genes encoding a complex machinery (e.g., the flagellum) where the components must be assembled in a given order [ 37].
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Here, we present combined methods for constructing aptazyme-regulated expression devices (aREDs) through computational cotranscriptional kinetic folding design and experimental validation.
Here we offer an overview on recent advances in the modular design of trigger-inducible mammalian expression devices that are either responsive by exogenous stimuli such as chemicals and physical cues or controlled by endogenous metabolites driving prosthetic circuits to treat metabolic disorders in a self-sufficient manner.
Typically, these expression devices allow to purify 200 300 µg of recombinant human CCN2/CTGF from 400 ml growth medium of stable transfected Flp-In-293 clones and approximately 300 µg recombinant rat CCN3/NOV from 400 ml conditioned supernatant of COS-7 cells that were infected with Ad5-CMV-rNOV.
The teams have used rival forms of expression chips, devices that track what genes are active at a given time in the parasite's life cycle.
These methods span a wide spectrum of multidisciplinary techniques, from new spectroscopic advances to in situ cell-selective protein expression to devices designed to mimic the conditions of flow present in blood vessels where in situ leukocyte migration occurs.
Since proper protein expression of a Device also requires a promoter and a terminator, each Device consists of eight basic parts in total (the six above, plus a promoter, plus a terminator).
Dr. John J. Mekalanos, a microbiologist at Harvard University, said he had used the cholera genome to make a gene expression chip, a device that tests when any of the bacterium's genes are active.
We also derive the analytical expression for power device rise time as a function of optical signal rise time and show that they are related by Lambert's W-function with exponential coefficients.
Bousoño's Teoría de la expresión poética (1952, rev. ed. 1966; "Theory of Poetic Expression") analyzed poetic devices and sought general rules and a scientific basis for the study of poetry.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com