Engineered revision of the E. coli Nissle 1917 Genome
Engineered revision of the E. coli Nissle 1917 Genome
批准号:
7481836
负责人:
FREDERICK R BLATTNER
金额:
$14.1万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2008
资助国家:
美国
项目状态:
已结题
起止时间:
2008-07-01 至 2009-12-31
关键词:
AttentionBacteriaBacterial ChromosomesChromosome DeletionChromosomesChromosomes, Human, 16-18ComplexDNADNA Transposable ElementsDefectDevelopmentDrug Delivery SystemsElementsEngineeringEscherichia coliEscherichia coli K12ExhibitsFermentationGenesGeneticGenetic RecombinationGenomeGoalsGrowthHumanIS ElementsIndividualInjection of therapeutic agentIntestinal DiseasesLaboratoriesLifeMethodsMobile Genetic ElementsModificationMusNeedlesOrganismPerformancePhasePositioning AttributePrincipal InvestigatorProbioticsProcessProductionProphagesProteinsRNARateRecombinant DNARecombinantsResearchStandards of Weights and MeasuresTechnologyTestingTherapeuticVariantbaseconceptexperienceimprovedpathogenic Escherichia coliprogramstherapeutic protein
中文摘要
描述(由申请人提供):转基因益生菌(有益)细菌传递治疗性化合物的能力是一种很有前途的新的实验方法,可以在不注射的情况下传递脆弱和复杂的生物分子。这项研究的长期目标是提高益生菌的遗传稳定性,以用作活的药物输送载体。大肠杆菌Nissle 1917是一种非致病性的大肠杆菌,目前用于肠道疾病的益生菌治疗,是一种有吸引力的候选药物释放系统。虽然重组DNA方法最初是在大肠杆菌中开创的,而且这种微生物仍然是重组产品细菌生产的最常见宿主,但仍然存在一些问题。菌株性能的下降在工业发酵中并不罕见,通常是由于起源于细菌染色体的可移动元件而导致遗传不稳定的结果。这项提案概述了一项利用具有良好特性的重组方法从E.coliNissle1917染色体上移除可移动元件的计划。要删除的序列是根据它们与致病性大肠杆菌中区域的相似性、许多可移动元件和可识别的前噬菌体序列的存在以及与将用于该菌株的治疗应用的基因的相似性来选择的。拟议的研究计划的主要目标是产生缺乏所有致病和移动遗传因素的大肠杆菌Nissle 1917的变种。将对单个缺失菌株进行活性测试,并测试它们在小鼠肠道中的存活能力。没有表现出活力或持久性损失的缺失菌株将被记录下来,并累积合并缺失。活性或持久性降低的缺失菌株将作为基因添加研究的宿主,以确定哪些基因是恢复活性和/或持久性所必需的。
英文摘要
DESCRIPTION (provided by applicant): The ability of genetically modified probiotic (beneficial) bacteria to deliver therapeutic compounds is a promising new experimental method for delivering fragile and complex bio-molecules without injection. The long-term goal of this study is to improve the genetic stability of a probiotic organism for use as a living drug delivery vehicle. Escherichia coli Nissle 1917, a non-pathogenic E. coli, currently used in probiotic treatment of intestinal disorders, is an attractive candidate drug delivery system. Although recombinant DNA methods were originally pioneered in E. coli and this organism remains the most common host for bacterial production of recombinant products, some problems still occur. Degradation of strain performance is not unusual in industrial fermentations and is often the result of genetic instability due to mobile elements originating from the bacterial chromosome. This proposal outlines a program for removing mobile elements from the E. coli Nissle 1917 chromosome using well characterized recombination methods. Sequences to be deleted are chosen on the basis of their similarity to regions in pathogenic E. coli, the presence of many mobile elements and identifiable prophage sequences and similarity to genes that will be used in therapeutic applications of this strain. The primary goal of the proposed research program is to produce variants of E. coli Nissle 1917 that lack all pathogenic and mobile genetic elements. Individual deletion strains will be tested for viability and their ability to persist in the mouse gut. Deletion strains that exhibit no loss of viability or persistence will be noted and the deletions cumulatively combined. Deletion strains with diminished viability or persistence will serve as hosts for gene addition studies, to determine which genes are required to restore viability and/or persistence.
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