H2020Докторантска мрежа2018–2023

synBIOcarb · Synthetic biology of carbohydrate-binding proteins: engineering protein-carbohydrate interactions for diagnostics and cell targeting

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

Период
2018-10-01 → 2023-03-31
Финансиране от ЕС
4 093 660 €
Участници
15
Схема
MSCA-ITN

Линиите свързват координатора с партньорите.

Накратко на български

Взаимодействията между протеините и захарното покритие на клетките се изследват чрез синтетична биология, за да се разбере как вируси и бактерии проникват в тъканите. Това помага за разработването на нови методи за диагностика и насочено лечение на инфекции и рак.

Този кратък обзор е генериран от изкуствен интелект

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

Резултати накратко

Synthetic biology of carbohydrate-binding proteins: engineering protein-carbohydrate interactions for diagnostics and cell targeting

Every living cell is covered in a coating of complex carbohydrates and so anything that approaches the cell membrane must descend through this forest of carbohydrates. The interaction of these carbohydrates with enzymes and proteins is an essential part of healthy cell activity but at the same time many parasites, viruses, bacteria and their toxins exploit these mechanisms to colonise tissues and enter cells. Understanding such processes can lead to new methods for diagnosis and treatment of infectious diseases. In addition the carbohydrate coating of cells changes when they become cancerous so that many of their carbohydrate structures become over-expressed, or uniquely expressed making them useful cancer biomarkers that can be exploited for diagnosis, or targeted immunotherapies/drug delivery. Our growing understanding of glycoscience, and the advent of chemical and synthetic biology methodologies, presents an opportunity to redesign and synthesise these biological components for diverse analytical, diagnostic and targeted therapeutic applications. This is the field of Synthetic Glycobiology. synBIOcarb brings together a diverse team of chemists, structural biologists, biophysicists, cell biologists and protein engineers who are pioneering the development of Synthetic Glycobiology, and four SMEs that are leading industrial innovation in glycoscience and protein engineering. During the project we aimed to: 1. further our fundamental understanding of structure-activity relationships for protein-carbohydrate interactions. In particular, how changes in the architecture of lectins affects their binding selectivity and ability to interact with, bend and fuse membranes together. 2. expand our toolbox of Synthetic Glycobiology building blocks that can be used to functionalise complex surfaces including supported bilayers, GUVs, living cells. This work includes chemical and enzymatic synthesis of new glycosylated lipidated peptides and use of bioorthogonal coupling to attach lectins to surfaces in defined orientations. 3. move Synthetic Glycobiology towards practical applications in diagnostic and analytical devices through developing methods to detect tumour associated cancer antigens and specific glycans important in the quality control of pharmaceutical glycoproteins. 4. move Synthetic Glycobiology towards practical applications in cell targeting and drug delivery, through investigation of how lectins attached to polymers, other lectins, or antibody fragments/mimetics, either through bioorthogonal coupling or genetic fusion, can be used to target cancer cells for drug delivery or immunotherapies.

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

Цел на проекта

The aim of the Initial Training Network will be to train 15 early stage researchers in the emerging field of synthetic glycobiology, equipping them with the skills needed for future careers in the medical technologies sector.Every living cell is covered in a coating of complex carbohydrates known as the glycocalyx. Anything that approaches the cell membrane must first descend through this forest of carbohydrates. Interactions between carbohydrates and lectins (carbohydrate-binding proteins) play essential roles in cell adhesion and endocytosis. Our growing understanding of glycoscience, and the advent of chemical and synthetic biology methodologies, presents an opportunity to redesign, synthesise and exploit glycocalyx and lectin components for diverse analytical, diagnostic and targeted therapeutic applications: this is the field of Synthetic Glycobiology.The ESF-funded report, “A Roadmap for Glycosicence in Europe”, has highlighted the importance of glycoscience to the European bioeconomy. The European glycomics market is growing rapidly (>10% growth p.a.). There is an urgent need to train ESRs with the scientific and entrepreneurial skills required to enable European industry to exploit this rapidly growing market.The synBIOcarb ETN brings together a diverse team of chemists, structural biologists, biophysicists, cell biologists and protein engineers who are pioneering the development of Synthetic Glycobiology, and four SMEs that are leading industrial innovation in glycoscience and protein engineering. Together, we will train 15 ESRs in the essential enabling technologies that underpin the development and exploitation of glycoscience: glycoconjugate synthesis; lectin engineering; biophysical interaction measurements; cell biology; analytical device technologies; entrepreneurial and transferable skills.

Оригинален текст от CORDIS (на английски).

Участници

Връзки

Данни: CORDIS, © Европейски съюз