Publications by authors named "Devon Van Cura"

Article Synopsis
  • PRAME and 5hmC are important biomarkers in melanoma, showing an inverse relationship where benign nevi have high 5hmC and low PRAME, while melanomas reverse this pattern.
  • Research using various imaging and database analyses indicates that lower levels of 5hmC are linked to higher PRAME levels in both premalignant and malignant melanoma cells.
  • The study suggests that TET2 plays a crucial role in regulating PRAME expression through DNA hydroxymethylation, highlighting the importance of epigenetic changes in melanoma development.
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Azaserine is a bacterial metabolite containing a biologically unusual and synthetically enabling α-diazoester functional group. Herein, we report the discovery of the azaserine (aza) biosynthetic gene cluster from Glycomyces harbinensis. Discovery of related gene clusters reveals previously unappreciated azaserine producers, and heterologous expression of the aza gene cluster confirms its role in azaserine assembly.

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Biosynthesis is an environmentally benign and renewable approach that can be used to produce a broad range of natural and, in some cases, new-to-nature products. However, biology lacks many of the reactions that are available to synthetic chemists, resulting in a narrower scope of accessible products when using biosynthesis rather than synthetic chemistry. A prime example of such chemistry is carbene-transfer reactions.

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The iron-dependent oxidase UndA cleaves one C3-H bond and the C1-C2 bond of dodecanoic acid to produce 1-undecene and CO. A published X-ray crystal structure showed that UndA has a heme-oxygenase-like fold, thus associating it with a structural superfamily that includes known and postulated non-heme diiron proteins, but revealed only a single iron ion in the active site. Mechanisms proposed for initiation of decarboxylation by cleavage of the C3-H bond using a monoiron cofactor to activate O necessarily invoked unusual or potentially unfeasible steps.

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