HEИндивидуална стипендия2022–2024

NONCO-MICROTIS · Exploiting single cell long non-coding RNA biology to target therapy-induced senescence in lung cancer

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

Период
2022-05-01 → 2024-04-30
Финансиране от ЕС
181 153 €
Участници
1
Схема
HORIZON-TMA-MSCA-PF-EF

Линиите свързват координатора с партньорите.

Накратко на български

Дългите некодиращи РНК в единични клетки при рак на белия дроб се анализират, за да се разбере как се променя метаболизмът на клетките след химиотерапия. Това помага за разработването на методи за елиминиране на устойчивите на лечение ракови клетки.

Този кратък обзор е генериран от изкуствен интелект

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

Резултати накратко

Exploiting single cell long non-coding RNA biology to target therapy-induced senescence in lung cancer

Senescence is a permanent state of growth arrest that can be induced by different types of stress, such as shortening of telomeres due to extensive replication, DNA damage, oxidative stress, chemotherapy treatment or oncogene overexpression. Senescent cells present characteristic morphological and biochemical features such as enlarged size, halted proliferation, activation of senescence-associated (SA) β-galactosidase activity and increased expression of cell cycle inhibitors. Furthermore, in several types of senescence the cells secrete a combination of interleukins, metalloproteases and growth factors, collectively known as the senescence-associated secretory phenotype (SASP). While the SASP reinforces senescence, its chronic activation can have pro-tumorigenic effects and contribute to several aging related pathologies . In fact, the persistence of therapy-induced senescent cancer cells in the tumor has been linked to resistance to chemotherapy. There is, therefore, a critical need to develop combinatorial approaches to not only stop proliferation, but also induce the elimination of the senescent tumor cells. Despite their decreased proliferative potential, senescent cells are metabolically active in order to cope with the energetic demands of the senescence program. Indeed, metabolic reprogramming is considered a hallmark of senescence. In general, senescent cells accumulate dysfunctional mitochondria resulting in an increase of reactive oxygen species (ROS). However, different types of senescence can lead to different types of metabolic changes. For instance, OIS cells display a significant increase in tricarboxylic acid (TCA) cycle intermediates, oxidative phosphorylation (OXPHOS) 16 and mitochondrial fatty acid oxidation, while fibroblasts undergoing replicative senescence show increased glycolysis and reduced OXPHOS 18-20. Although different triggers of senescence result in broad metabolic differences, the interplay between senescent cells and metabolism is highly dynamic and context dependent, and the underlying mechanisms remain largely unexplored. In this context, long noncoding RNAs (lncRNAs) represent a relatively uncharted territory for investigation. LncRNAs are transcripts recently defined as longer than 500 nucleotides with exquisite cell-type specific expression patterns that lack protein-coding potential. They are tightly regulated during development or in response to signaling pathways. Although it is still unclear how many of the thousands of annotated lncRNAs have a significant biological role, several have been found to be essential for the regulation of key cellular processes, such as proliferation and differentiation, as well as a broad range of diseases including cancer . Notably, our previous work and other laboratories’ have reported that specific lncRNAs are differentially expressed during senescence induction, regulating multiple senescence aspects, from transcriptional response to SASP production. Intriguingly, recent studies have involved a number of lncRNAs in the regulation of cellular metabolism, and ncRNAs are emerging as interactors and regulators of metabolic enzymes. However, the contribution of this functional diverse class of molecules to the metabolic reprogramming of senescent cells remains unknown. Here we report the identification of the senescence-specific lncRNA, sin-lncRNA, which is induced in senescence to prevent uncontrolled metabolic alterations, by regulating the function of a key metabolic enzyme and the transcription of metabolic genes. Together, our results provide evidence of an RNA-dependent metabolic network specific of the senescent cellular state.

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

Цел на проекта

NONCO-MICROTIS will combine new findings in long non-coding RNA (lncRNA) biology with cutting edge research to uncover innovative therapeutic opportunities for the treatment of lung cancer, one of the most prevalent and deadliest types of cancer worldwide. Current treatments which are often insufficient, include the use of chemotherapy and radiation that induces tumor cell arrest. This process termed as therapy-induced senescence (TIS) has been considered a positive outcome for cancer therapy. However, there is evidence that TIS can be reversible leading to an aggressive phenotype and disease relapse. The low percentage of senescent cells in the tumor together with the lack of specific markers senescence senescence has prevented the development of methods to identify and target this population of cells. I will exploit the highly specific expression patterns of lncRNAs by tailored single cell methods to identify therapy-induced senescent cells and their relationship with the tumor microenvironment. Further, NONCO-MICROTIS will investigate the senescence-related roles of small peptides produced by TIS-lncRNAs to be exploited for the targeting of these singular cells within lung tumors. Altogether my study will define a new senescence signature using specific lncRNAs that will help to identify senescent cells and will provide information on how these cells impact the neighbouring populations. Moreover, it will uncover mechanistic roles of micropeptides in the regulation and targeting of senescent cells and will provide the basis for the use of micropeptides as therapeutic targets. NONCO-MICROTIS will combine cutting-edge techniques in transcriptomics and molecular and cellular biology techniques resulting in an original, multidisciplinary project with high potential for ground-breaking findings. Furthermore, it will allow me to reach the level of professional maturity needed to become an independent researcher.

Оригинален текст от CORDIS (на английски).

Участници

  • FUNDACION PARA LA INVESTIGACION MEDICA APLICADA FIMA · PamplonaКоординаторИспания

Връзки

Данни: CORDIS, © Европейски съюз