THERMCP · Construction of microcompartments in thermophilic Geobacillus thermoglucosidasius as nano-bioreactors for advanced biofuels production at high temperature
„Хоризонт 2020“ — Действия „Мария Склодовска-Кюри“
- Период
- 2016-05-09 → 2018-05-08
- Финансиране от ЕС
- 195 455 €
- Участници
- 1
- Схема
- MSCA-IF-EF-CAR
Линиите свързват координатора с партньорите.
Накратко на български
Бактериите Geobacillus се модифицират чрез създаване на микрокомпартменти, които действат като нано-биореактори за производство на етанол и изобутанол при високи температури. Това помага за увеличаване на добива на биогорива и намаляване на токсичността за организма, който ги произвежда.
Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.
Резултати накратко
Construction of microcompartments in thermophilic Geobacillus thermoglucosidasius as nano-bioreactors for advanced biofuels production at high temperature
Due to the rapidly diminishing sources of conventional fossil fuels coupled with the large evidence-base for ecocide related to increased anthropogenic atmospheric carbon dioxide, there is an urgent need for rapid transition from non-renewable hydrocarbons to alternative novel pathways in order to secure, clean and efficient ‘green’ bio-energy production. This will have a major impact on individuals and the environment at a global scale. Thermophilic Gram-positive spore-forming bacterial Geobacillus species have an intrinsic ability to utilise a wide range of substrates including renewable resources, such as cell wall hemicellulose polymers, and are of biotechnologically and industrially important producers of ethanol and isobutanol. However, tolerance to biofuel-related alcohols by the host-producing organism is often lower than that of the exogenously supplied alcohol. This arises due to the toxicity of reactive intermediates, such as aldehydes. Co-localising the steps in alcohol production in an organelle designed to protect reactive intermediates from undesirable interactions provides a route to increased yields and decreased toxicity. Bacterial MicroComPartments (MCPs) are organelles that host specific biochemical reactions for both anabolic and catabolic functions. Engineered, morphologically-diverse MCPs bearing heterologous enzymatic pathways have shown enhanced productivity for commodity chemicals, which make MCPs an important focus for metabolic engineering. Gaining control of BMC assembly and incorporation of a heterologous enzymatic cargo has yet to be achieved in thermophiles. The Fellowship aimed to find new perspectives in the development of novel bacterial strains of thermophilic Geobacillus spp. to enhance the production of second-generation biofuels at high temperatures. The THERMCP objectives were: 1). To search for shell protein homologs in the available sequenced genomes of Geobacillus species and perform bioinformatics analysis of the pdu operon from G. thermoglucosidasius; 2). To establish the protein engineering rules and the ultimate benefit of directing the Pdc and Adh enzymes required for ethanol production to the Pdu MCP shell of thermophilic G. thermoglucosidasius; 3). To engineer a strain of G. thermoglucosidasius capable of overproducing 2-ketoisovalerate (2-kiv) as described in the literature, in a strain where fermentation pathways have been deleted; 4). To use the strain developed in 3. as a platform to engineer a novel keto-acid dehydrogenase and acylating alcohol dehydrogenase route for isobutanol production, and introduce this into the protein MCP in thermophilic G. thermoglucosidasius. The project has achieved most of its objectives and milestones for the period, with relatively minor deviations. Furthermore, a set of project training objectives were satisfied to reintegrate Dr. Yana Wade into the research environment after a career break. She also gained a thorough grounding in microbial engineering of thermophiles to complement her existing knowledge and skills in thermophilic environmental microbiology providing a foundation for a research career in industrial applied microbiology.
Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз
Цел на проекта
Geobacillus spp are thermophilic Gram positive bacteria which are specialists in the degradation of hemicellulose derived from renewable biological feedstocks and the supervisor’s group has recently engineered strains able to degrade cellulose. Some of the strains are facultative anaerobes which can grow anaerobically and produce fermentation products such as lactate and ethanol. Hence they are an ideal platform for producing fermentation products from renewable carbohydrate resources, such as lignocellulose. Recent genome sequencing has shown that some strains have the ability to produce proteinaceous micro-compartments, known from other organisms to host reactions which produce unstable/highly reactive intermediates, and these have been observed by EM analysis in the lab of the supervisor. In this project the MC fellow will exploit some novel technology under development in the lab of the supervisor to develop thermostable alpha-keto acid decarboxylases, which are not typically present in thermophiles. These produce reactive aldehydes which cause toxicity to producing cells, even in the presence of a cognate alcohol dehydrogenase, but this can potentially be reduced by targeting the decarboxylase and alcohol dehydrogenase to a protein micro-compartment. Therefore, the aim of this project is to establish the rules for targeting enzymes to protein micro-compartments in Geobacillus spp and exploit these using thermophilic decarboxylase – dehydrogenase combinations to produce 1) ethanol, 2) isobutanol. The final constructs will be evaluated against real lignocellulosic feedstocks in the lab of the industrial collaborator ReBio Ltd. The project will provide an in depth training in metabolic and cellular engineering, employing synthetic biology strategies.
Оригинален текст от CORDIS (на английски).
Участници
- UNIVERSITY OF BATH · BATHКоординаторОбединеното кралство
Връзки
Данни: CORDIS, © Европейски съюз
