CRISPRSYSTEM · Identification and Characterization of Host and Phage Proteins Interacting with the CRISPR System
7РП — „Хора“ (Действия „Мария Кюри“)
- Период
- 2010-06-01 → 2014-05-31
- Финансиране от ЕС
- 100 000 €
- Участници
- 1
- Схема
- MC-IRG
Линиите свързват координатора с партньорите.
Накратко на български
CRISPR-Cas системата изследва как бактериите се защитават от вируси, като например чрез придобиване на нови части от ДНК. Разбирането на този механизъм помага за прецизната модификация на генетичен материал при хората и развитието на биотехнологиите.
Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.
Резултати накратко
Identification and Characterization of Host and Phage Proteins Interacting with the CRISPR System
Our proposal focused on studying novel aspects in a newly discovered bacterial defense system, the clustered regularly interspaced short palindromic repeats (CRISPR)-CRISPR-associated (Cas) system. Research on this system in the last seven years, since its discovery, has yielded tremendous insights on its regulation, mechanism, and applications. One breakthrough application of the system is the precise modification of any given DNA molecule, including the human genetic material. Thus, the prospects are high that the system will play a significant role in human health, as well as in significant biotechnological applications. Its potential for advancing biotechnological applications is arguably greater than the tremendous applications enabled by the discovery of restriction enzymes in the late 20th century. We focused in our proposal mainly on basic aspects of the system, but also demonstrated the use of the system for genetic engineering applications in bacteriophages. During the grant period, I managed to establish a highly productive lab that focuses on cutting-edge research in the CRISPR/Cas field. My lab was the first to provide a platform for studying a process that could not be studied till then, the CRISPR adaptation process. We established an experimental system that demonstrated the acquisition process of the bacterial immune system and identified the essential proteins, DNA elements, and key steps in the mechanism of this process. This study was published in Nucleic Acids Research and was already cited ~100 times within two years since its publication. We also re-defined borders of the elements of the CRISPR array in a study published in the Journal of Molecular Biology. Moreover, we identified a novel element in sequences acquired to confer immunity against phages. This element enhances the acquisition of these sequences into the CRISPR array and was published in PNAS. The results leading to these publications were not originally in the proposal, but replaced aims that were proposed by us but completed by a competing group. In another study, also published in PNAS, my group identified a novel protein essential for the CRISPR immunity function, and elucidated its mechanism of action. Another important study showed, for the first time, the activity of the CRISPR/Cas system against lysogens and prophages. This study was published in the Journal of Bacteriology and was cited already 45 times. These last two manuscripts describe the results proposed in one of the major aims of the proposal. Lastly, we managed to describe a system for modifying phage genomes using the CRISPR-Cas system. The published scientific breakthroughs resulting from funding this proposal enabled me to participate as an invited lecturer in three international CRISPR meetings. It enabled me to support a productive team of motivated scientists. In addition, the support boosted my career in that the accomplishments enabled me to secure more grants, such as the prestigious StG-ERC, as well as others. Finally, these achievements granted me tenure in Tel Aviv University, as well as a promotion to Associate Professor. Thus, I believe that the expected career support and scientific achievements were fully met.
Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз
Цел на проекта
The CRISPR system was recently identified as a bacterial defense mechanism against phages and plasmids. The CRISPR system is composed of DNA arrays containing short sequences identical to those present in phages and plasmids. These short DNAs are transcribed and processed by CRISPR associated proteins that also guide other CRISPR proteins to target the invading DNA. Only a few of the CRISPR components have been characterized to date and their mechanism of action is still largely unknown. Phage defense mechanisms probably have co-evolved against the CRISPR system, but none have yet been found. We propose to identify phage genes that counteract the CRISPR system. We will utilize screens that make use of the bacterial version of the yeast two-hybrid genetic system, phage genomic libraries, and biochemical assays to identify phage genes that help phages evade the CRISPR system. The candidate genes will be characterized both genetically and biochemically to allow structural studies of their interactions with the CRISPR system. These genes will then be cloned into commercial phages that are used to kill bacterial pathogens so that the phages acquire resistance to the CRISPR defense mechanism. We also propose to identify the yet unknown E. coli proteins that participate in the activity of the CRISPR system by using genetic screens of transposon insertion mutant libraries. The identification of novel proteins that participate in the CRISPR system will constitute a significant step toward the ultimate goal of reconstituting the complete system from purified proteins. Finally, we propose to clone all the components of the E. coli CRISPR system and render them functional in heterologous prokaryotic organisms such as attenuated strains of Salmonella, Shigella and more distantly related species such as Streptococci. Cloning the genes of the E. coli CRISPR system into heterologous bacteria will allow us to genetically address the role of each gene.
Оригинален текст от CORDIS (на английски).
Участници
- TEL AVIV UNIVERSITY · Tel AvivКоординаторИзраел
Връзки
Данни: CORDIS, © Европейски съюз
