| Literature DB >> 24066279 |
Valerio Vitelli1, Paolo Falvo, Lela Khoriauli, Alexandra Smirnova, Riccardo Gamba, Marco Santagostino, Solomon George Nergadze, Elena Giulotto.
Abstract
Entities:
Keywords: TERRA; cancer cell lines; northern blotting; qRT-PCR; telomere length
Year: 2013 PMID: 24066279 PMCID: PMC3776138 DOI: 10.3389/fonc.2013.00245
Source DB: PubMed Journal: Front Oncol ISSN: 2234-943X Impact factor: 6.244
Figure 1(A) Scatter plot of mean telomere length, measured by Southern blotting, versus TERRA expression determined by qRT-PCR of the same HeLa clones from Smirnova et al. (2) using four primer pairs: 10q (blue diamonds) hybridizing with 3 subtelomeres (10q, 1q, and 2q); 12q (red squares) with 2 subtelomeres (12q and 7q); 17q (blue crosses) with 13 subtelomeres (17q, 2q, 4q, 5q, 6p, 6q, 8p, 10q, 16q, 19p, 19q, 21q, and 22q); and XqYq (orange dots) with 3 subtelomeres (XqYq, 9p, and 19p). Pearson’s correlation coefficient (r) and its significativity (p-value) for each primer pair are shown on the right. (B) Scatter plot of mean telomere length, measured by Southern blotting, versus TERRA expression, determined by qRT-PCR, of seven new HeLa clones using the same primer pairs described in (A), a pair specific for the 15q subtelomere (green triangles) and a pair specific for XpYp (blue asterisks). Pearson’s correlation coefficient (r) and its significativity (p-value) for each primer pair are shown on the right. A significant r coefficient (*p < 0.05) was calculated for the 17q primer pair, suggesting that, at some of the chromosome ends recognized by these sequences, telomere length, and TERRA expression may be positively correlated. (C) Subtelomere-specific TERRA levels in HeLa wild type (blue bars) and HeLa hTR/hTERT cells (red bars) determined by qRT-PCR. The value of the subtelomere XqYq from HeLa wild type was set at 1. Averages and standard deviations from two experiments are shown. Each reaction was carried out in triplicate.