By Ottaviano Bon, John Withers
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Extra resources for A Description of the Grand Signour's Seraglio or The Turkish Emperours Court
2000). A pseudoknot motif contains CR2 and CR3, followed by CR4 and CR5 containing the H/ACA motif (Chen et al. 2000). Previously, the presence of an H/ACA motif in TERC, common to small nucleolar RNA (snoRNA), was shown to be recognized by dyskerin, a pseudouridylase important for rRNA maturation (Mitchell et al. 1). There are two different regions in TERC important for its interaction with TERT and regulating its catalytic activity. Nt 1–209 and nt 241– 330 (within CR4-CR5), also called inserted hairpin1 (Mitchell and Collins 2000).
The total number of trimethylated histones does not vary in the other regions of the genome, suggesting a specific role in the DNA methylation process (Benetti et al. 2007). Interestingly, these cells also show elongated telomeres, possibly due to an increase in sister chromatid exchange at the telomere (Benetti et al. 2007). This observation reflects a specific activity of dicer towards the genes that are directly involved in DNA methylation. In dicer null cells, an altered level of Rb, an inhibitor of DNMTs, causes an overall decrease of methylation and favors recombination processes at the telomeres, which may be responsible for their elongation (Benetti et al.
Human EST1A/SMG6, EST1B/SMG5, and EST1C/SMG7 were identified through their sequence similarity with the S. cerevisiae EST1 gene product, and their involvement in telomere maintenance was ascertained by the observation of telomere shortening upon their disruption or overexpression (Reichenbach et al. 2003; Snow et al. 2003). Overexpression of EST1A causes growth arrest as well as morphology changes and DNA fragmentation (Reichenbach et al. 2003). Anaphase bridges are also detected but the signal for telomeres, evaluated by fluorescence in situ hybridization (FISH), does not change indicating that EST1 overexpression results in uncapping but not an immediate alteration of telomere length (Reichenbach et al.