Glucosylated hydroxymethyluracil, DNA base J, prevents transcriptional readthrough in Leishmania.

van Luenen, Henri G A M; Farris, Carol; Jan, Sabrina; Genest, Paul-Andre; Tripathi, Pankaj; Velds, Arno; Kerkhoven, Ron M; Nieuwland, Marja et al. · Cell · 2012

basic_science · Level V

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Abstract

Some Ts in nuclear DNA of trypanosomes and Leishmania are hydroxylated and glucosylated to yield base J (β-D-glucosyl-hydroxymethyluracil). In Leishmania, about 99% of J is located in telomeric repeats. We show here that most of the remaining J is located at chromosome-internal RNA polymerase II termination sites. This internal J and telomeric J can be reduced by a knockout of J-binding protein 2 (JBP2), an enzyme involved in the first step of J biosynthesis. J levels are further reduced by growing Leishmania JBP2 knockout cells in BrdU-containing medium, resulting in cell death. The loss of internal J in JBP2 knockout cells is accompanied by massive readthrough at RNA polymerase II termination sites. The readthrough varies between transcription units but may extend over 100 kb. We conclude that J is required for proper transcription termination and infer that the absence of internal J kills Leishmania by massive readthrough of transcriptional stops.

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