4 4 Dimethyl Oxazoline Derivatives

4,4-Dimethyl oxazoline derivatives are heterocyclic compounds containing a five-membered ring with oxygen and nitrogen, together with two methyl groups attached to the same carbon; their tunable structure makes them useful in chemical and biochemical research. The oxazoline ring provides a polarized framework in which the heteroatoms influence acidity, coordination, and reaction behavior, while acidic or basic conditions can promote hydrolysis or ring-opening transformations. These derivatives serve as versatile synthetic intermediates for constructing functionalized heterocycles and biologically relevant molecules, supporting studies of molecular design, reaction mechanisms, and the development of compounds with potential pharmaceutical or materials applications.

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Source: Lea-Smith, D. J., et al. Generation of Marked and Markerless Mutants in Model Cyanobacterial Species. J. Vis. Exp. (2016)This video demonstrates the cryopreservation of cyanobacterial strains by combining concentrated cell suspensions with glycerol or DMSO and storing them at low temperatures, enabling long-term maintenance of viable cultures for photosynthesis and genetic studies.

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Two methods for assigning the α- and ε-dimethylamine nuclear magnetic resonance signals of a reductively 13C-methylated N-terminal lysine are described. One method utilizes the pH-induced selectivity of the reductive methylation reaction, and the other uses aminopeptidase to selectively remove the N-terminal lysine.

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Cited by 38 •

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Stable isotope labeling of peptides by reductive dimethylation (ReDi labeling) is a rapid, inexpensive strategy for accurate mass spectrometry-based quantitative proteomics. Here we demonstrate a robust method for preparation and analysis of protein mixtures using the ReDi approach that can be applied to nearly any sample type.

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Cited by 4 •

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The protocol provides instruction for modifying RNA with dimethyl sulfate for mutational profiling experiments. It includes in vitro and in vivo probing with two alternative library preparation methods.

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Cited by 2 •

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We present an effective and reproducible method to isolate and culture neural progenitor cells from embryonic and postnatal brain tissue for chromatin immunoprecipitation (ChIP) of histone 3 lysine 79 dimethylation (H3K79me2) - a histone mark located within the globular domain of histone 3.

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