TLSCHECK · Regulation of pol-eta by phosphorylation, ubiquitination and SUMOylation
7РП — „Хора“ (Действия „Мария Кюри“)
- Период
- 2012-03-01 → 2016-02-29
- Финансиране от ЕС
- 100 000 €
- Участници
- 1
- Схема
- MC-CIG
Линиите свързват координатора с партньорите.
Накратко на български
Полимеразата pol eta помага на клетките да копират увредена от слънцето ДНК, като дейността ѝ се регулира чрез добавяне на протеини и фосфатни групи. Разбирането на тези процеси помага да се разбере как се предотвратяват мутации и рак на кожата.
Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.
Резултати накратко
Regulation of pol-eta by phosphorylation, ubiquitination and SUMOylation
Xeroderma pigmentosum variant (XP-V) is an autosomal recessive genetic disorder that results in a greatly enhanced predisposition to skin cancer. XP-V is caused by a defect in pol eta, a DNA polymerase used by the cells to replicate across damaged DNA. Pol eta belongs to a class of polymerases called Translesion synthesis polymerases (TLS) and is especially suited to bypass the adducts that are formed on DNA upon exposure to UV irradiation. It is important to remember that the sun is a major source of UV and we are constantly exposed to its light, thus the function of pol eta is crucial for cancer prevention. This polymerase can be modified by the addition of small peptides, called modifiers (Ubiquitin and SUMO) or by phosphate groups, in processes called respectively Ubiquitylation, SUMOylation and phosphorylation. The aim of this proposal is to characterize the function of pol eta, and in its regulation by protein modifications, in the context of the cellular repair systems and the DNA damage surveillance mechanisms. During this project, we performed a screening for new interactors of polymerase in order to find and understand how the cells control its activity. We are currently focusing on a new protein that appears to control the recruitment of pol eta to the replication fork, where the DNA is being synthesized. This ensures that the polymerase is not engaged during unperturbed DNA replication. This is a crucial step for the cellular life as TLS polymerases, such as pol η can introduce mutations if they are not tightly regulated. Protein phosphorylation is another post-translational modification that can control the DNA translesion synthesis response. Recent evidence shows that pol eta is activated by phosphorylation after DNA damage. We have now identified new sites where this modification occurs. This discovery provides an additional layer of control, ensuring the timely and correct use of damage avoidance systems. This work will provide insights into the way pol eta assists in the maintenance of genome stability, potentially providing diagnostic biomarkers for atypical XP-V diagnosis and, in the long-term, hopefully contribute to the design of rational cancer therapies, such as synthetic lethality and drug combination strategies. The CIG allowed the researcher to be employed by the National Research Council and to establish his own laboratory. He is now in charge of an independent line of research with the help of two recruited Post-doctoral fellows, one PhD student and two undergraduate students.
Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз
Цел на проекта
Xeroderma pigmentosum variant (XPV) is an autosomal recessive genetic disorder that results in enhancced predisposition to skin cancers. XPV results from a defect in the translesion synthesis (TLS) polymerase poleta. TLS allows bypass of unrepaired damage permitting completion of replication. Poleta is phosphorylated and ubiquitinated and can interact with ubiquitin and SUMO, two post-translational modifications that are important in a number of DNA repair pathways, via multiple domains. Mutants in those domains show a defect in DNA damage checkpoint activation, pointing out an unexpected connection between TLS and one of the DNA damage surveillance mechanisms. TLS is regulated by ubiquitination of the proliferating cell nuclear antigen (PCNA). While PCNA ubiquitination is essential for TLS, new evidence suggests that is not needed for the initial recruitment of the polymerases to chromatin. The objective of this proposal is to identify how poleta’s function is modulated by interaction of a number of unknown factors with its different domains, ensuring both its recruitment when needed and its inhibition when its action would be deleterious for normal replication. I propose to dissect the checkpoint activation cascade to unveil the role of poleta in this pathway, analyze known factors involved in both the ubiquitination and SUMOylation pathways and to conduct a proteomic study of poleta to identify novel interactors which will be assayed for TLS functionality in vivo. Insight into the function of a core cancer protection pathway, plus the potential identification of new and important partners controlling poleta will lead to finding new diagnostically relevant biomarkers for XPV patients in whom mutations in poleta have not been found. In the long-term, Y-family polymerases are likely candidate targets for synthetic lethality strategies in cancer treatment and thus a mechanistic understanding of their function will be essential to designing rational therapies.
Оригинален текст от CORDIS (на английски).
Участници
- CONSIGLIO NAZIONALE DELLE RICERCHE · RomaКоординаторИталия
Връзки
Данни: CORDIS, © Европейски съюз
