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Defining the sequence requirements for the positioning of base J in DNA using SMRT sequencing.

Nucleic Acids Res. 2015; 
Genest PA, Baugh L, Taipale A, Zhao W, Jan S, van Luenen HG, Korlach J, Clark T, Luong K, Boitano M, Turner S, Myler PJ, Borst P.
Products/Services Used Details Operation
PCR Cloning and Subcloning Cloning of wild-type and mutant telomeric repeats into a Leishmania expression vector The DNA sequences 5(cid:4) -AAGCTT(GGGTTA)10TCTAGA- 3(cid:4) and 5(cid:4) -AAGCTT(GGGTTT)10TCTAGA-3(cid:4) were synthe- sized by Genscript and cloned in the DNA vector pUC57 before being subcloned in the HindIII and XbaI sites of the Leishmania expression vector pGEM 7Zf ␣-neo-␣. Get A Quote

摘要

Base J (β-D-glucosyl-hydroxymethyluracil) replaces 1% of T in the Leishmania genome and is only found in telomeric repeats (99%) and in regions where transcription starts and stops. This highly restricted distribution must be co-determined by the thymidine hydroxylases (JBP1 and JBP2) that catalyze the initial step in J synthesis. To determine the DNA sequences recognized by JBP1/2, we used SMRT sequencing of DNA segments inserted into plasmids grown in Leishmania tarentolae. We show that SMRT sequencing recognizes base J in DNA. Leishmania DNA segments that normally contain J also picked up J when present in the plasmid, whereas control sequences did not. Even a segment of only 10 telomeric (GGGTTA) repeats w... More

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