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Pelletier, R., Farrell, B. T., Miret, J. J. & Lahue, R. S. Mechanistic features of CAG*CTG repeat contractions in cultured cells revealed by a novel genetic assay.
An international team led by Ivan Simko, of the USDA in Salinas, California, have developed a genetic assay to distinguish fast- from slow-deteriorating lettuce varieties based on a single DNA region identified in a previous study.
The regional sampling design used makes this study the largest scale genetic assay of a widespread Neotropical avian taxon published to date.
As a proof-of-concept genetic assay, the novel signaling strategy, as well as desirable analytical capability, would significantly benefit the development of versatile amplification gene profiling platforms, revealing great promise in biological studies and medical diagnostics.
The aim of this study was to establish a sensitive and rapid genetic assay to detect lymph node micrometastasis and to assess its usefulness clinically for cervical lymphadenectomy in esophageal cancer.
To determine the substrate specificity of the NS3 protease, amino acid sequences cleaved by the NS3 protease were obtained from randomized sequence libraries by using a screening method referred to as GASP (Genetic Assay for Site-specific Proteolysis).
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New genetic assays and histochemical screens must be developed to differentiate prostate cell behavior from cell appearance.
In contrast, only a minor increase in the amount of chromosome breakage was observed by either physical or genetic assays.
The Molecular Diagnostic Lab offers tests for a wide variety of infectious disease agents and several genetic assays.
The goal of this project is to use a variety of neuroimaging, behavioral and genetic assays to identify infants at high risk for developing autism - ideally within the first 6 months of life.
The traditional approach to protein function analysis has been the design of smart genetic assays and powerful purification protocols to address very specific questions concerning cellular mechanisms.
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