H2020Индивидуална стипендия2016–2018

EnterTerra · Transcriptional regulation and mechanistic insights on the telomeric lncRNA TERRA

„Хоризонт 2020“ — Действия „Мария Склодовска-Кюри“

Период
2016-10-01 → 2018-09-30
Финансиране от ЕС
175 420 €
Участници
1
Схема
MSCA-IF-EF-ST

Линиите свързват координатора с партньорите.

Накратко на български

Теломерите произвеждат специални молекули, наречени TERRA, чиито функции и механизми на регулиране се изследват. Разбирането им помага за контрола върху дължината на хромозомите, което е важно за разработването на нови методи за терапия срещу рака.

Този кратък обзор е генериран от изкуствен интелект

Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.

Резултати накратко

Transcriptional regulation and mechanistic insights on the telomeric lncRNA TERRA

Telomeres are transcribed into a novel class of long noncoding (lnc) RNAs, called telomeric repeat containing RNAs (TERRA) whose transcriptional regulation and functions are largely unknown. Telomeres are dynamic nucleoprotein complexes that protect the physical extremities of eukaryotic chromosomes from degradation and inappropriate recombination events. Following each round of cell division, telomeres progressively shorten due to limitations of the semiconservative DNA replication, ultimately leading to rampant genomic instability, cellular senescence, and apoptosis. Telomere erosion is counteracted by the telomerase, a ribonucleoprotein enzyme that maintains the length of the telomeres in highly proliferative cell lines, such as the human germ lines and stem cell lineages. However, in most somatic cells, telomerase is inactive. Telomere shortening in the absence of telomerase limits the replicative potential of cells providing a powerful tumor suppressive mechanism. Up to 90% of human cancers reactivate telomerase to bypass the senescence barrier and ensure chromosomal stability and cellular immortalization. Thus, the ability to regulate the length and function of the telomeres is an attractive research target for cancer therapy. In previous studies we found that, in spite of the heterochromatic state of the chromatin, telomeres are transcriptionally active producing a novel class of lncRNAs. The telomeric repeat-containing RNAs (TERRA) remain in the nucleus and partially co-localize with the telomeres. The identification of TERRA revealed a surprising unknown telomeric mechanism and opened up new research direction on telomere functions. The exact roles of TERRA in telomere length regulation remain to be elucidated. TERRA has been implicated in recruiting chromatin modulators to dysfunctional telomeres during senescence but the postulated roles of TERRA as protein recruiter remain to be tested. Overall, the importance of TERRA binding to telomerase and other telomere modifying enzymes is not well understood representing a fundamentally important question in telomere research that will be tackled in this study. Our objective is to investigate the biogenesis of TERRA and it role in the cell. We plan to systematically identify the transcriptional factors that bind TERRA promoters and characterize their role in TERRA production.Although TERRA transcripts stem from multiple chromosomes ends, it is unclear whether they act on the telomere they originated from or if they can associate with multiple chromosome ends in. In addition, TERRA has been found to interact with some telomeric proteins and heterochromatin modulators; however it remains to be tested if they are recruited by TERRA. In this study, I will explore the dynamics of TERRA localization and determine if the transcripts remain attached to the sequence of origin or they can act at other chromosomal ends or loci. I will elucidate the role of TERRA in stabilizing or recruiting telomeric or heterochromatic proteins at both telomeric and non-telomeric loci. I will assess the function of TERRA-recruited proteins on the chromatin and explore if TERRRA acts as a scaffold to assemble a wide variety of enzymatic activities.

Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз

Цел на проекта

Telomeres, the heterochromatic structures that protect the ends of the chromosomes are transcribed into a novel class of long non-coding RNAs whose transcriptional regulation and functions are unknown. Telomeres protect the physical extremities of the chromosomes and they are are essential to genome integrity and stability. Dysfunctional telomeres have been detected in up to 90% of human cancers. We recently found that telomeres are transcribed from the subtelomeric region towards the end of the chromosome into the telomeric repeat-containing RNAs (TERRA). The identification of TERRA introduced a new field of research that demonstrates the structural and functional complexity unfolding at telomeres. Several lines of investigation have failed to elucidate the transcriptional activation network and functions of TERRA. The proposed research is built on a series of unrelated parts to explore the transcriptional requirements and the role of TERRA in the cells, employing a variety of different and revolutionary approaches. We plan to systematically identify the transcriptional factors that bind TERRA promoters and characterize their role in TERRA biogenesis (1). We will explore the dynamics of TERRA localization and determine if the transcripts remain attached to the sequence of origin or they can act at other chromosomal ends or loci (2). And finally we will elucidate the role of TERRA in stabilizing or recruiting telomeric or heterochromatic proteins at both telomeric and non-telomeric loci and assess their function on the chromatin (3). We expect that our innovative approaches will decipher TERRA’s localization preference on the chromatin, explore the multilayered ribonucleoprotein TERRA cluster, and it will provide new insights on plethora of telomere functions. Our studies will have a profound impact on our current understanding of the structural and functional complexity of telomeres.

Оригинален текст от CORDIS (на английски).

Участници

  • ECOLE POLYTECHNIQUE FEDERALE DE LAUSANNE · LausanneКоординаторШвейцария

Връзки

Данни: CORDIS, © Европейски съюз