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Chemical Tools to Probe the Activation of Bacterial Signaling

Chemical Tools to Probe the Activation of Bacterial Signaling
探测细菌信号传导激活的化学工具
批准号:
2003208
负责人:
Erin Carlson
金额:
$24.3万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2020
资助国家:
美国
项目状态:
已结题
起止时间:
2020-05-01 至 2024-04-30

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中文摘要
翻译
细菌可以感知并对周围的世界做出反应。例如,在恶劣环境中的微生物会激活防御机制。然而,细菌如何能够区分它们遇到的许多化学刺激并做出相应的反应还不清楚。明尼苏达大学的Carlson和Goodpaster教授使用化学合成和生物化学方法来了解细菌使用的反应途径,以及它们的反应如何适应各种环境条件,如高温,低营养或化学化合物的存在,如抗生素。这些知识最终使我们能够控制细菌的行为,包括生产生物燃料或可用作药物的天然产品。一系列教育活动向学生,特别是来自低社会经济群体和不同背景的女孩,介绍微生物在我们生活中的作用。这些努力包括多年来与同一批女孩和年轻女性的互动,鼓励她们在未来的职业生涯中将自己视为科学家。该计划还为研究生提供机会,指导和教导从六岁开始的学生,并生成广泛传播的材料,使其他人能够向年轻学生讲授细菌及其对我们生活的许多功能,无论是好是坏。有了这个奖项,生命过程计划的化学正在资助明尼苏达大学的Carlson和Goodpaster教授研究微生物如何将它们所生活的复杂环境转化为生存和繁荣所需的行动。这种能力的关键是双组分系统(TCS),它由组氨酸激酶和反应调节蛋白对组成。单个生物体拥有数十至数百个单独的TCS,每个TCS对一个或少量化学信号具有高灵敏度和选择性。每一种化学信息都被转化为一种确定的细菌作用,包括生长、运动、天然产物的生物合成和致病机制。虽然已经研究了许多单独的TCS,但目前的方法不能全面评估其中许多TCS被诱导的条件,TCS信号转导和表型结果之间的关系的表征,或多个TCS之间的反应调节。对TCS介导的信号传导的更深入的理解是通过以下方式实现的:1)分子的合成和评估,以了解如何将含磷酸盐的分子内化到细菌中,以及2)开发化学蛋白质组学方法,以将TCS与其刺激分子配对,并在活细胞中通过环境应激源全局映射HK激活。总体目标是定义一套TCS,需要一个通用的压力反应和那些刺激特异性。这些信息促进了对细菌如何能够利用其相对有限的基因组来协调对几乎无限的刺激的反应的更深入的理解。这一目标与NSF的10大理念之一--理解生活规则相一致。 阐明了一组预测生物体可观察特征及其表型的规则,因为它与TCS的作用有关。 这些研究目标与教育和推广活动相辅相成,重点关注来自低社会经济群体和不同背景的女孩,向她们介绍微生物在我们日常生活中的作用。该奖项反映了NSF的法定使命,并通过使用基金会的智力价值和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
Bacteria can sense and respond to the world around them. For example, a microbe in a hostile environment activates mechanisms of defense. However, it is not well understood how bacteria are able to differentiate between the many chemical stimuli that they encounter and respond accordingly. Professors Carlson and Goodpaster of the University of Minnesota uses chemical synthesis and biochemical methods to gain an understanding of the response pathways that bacteria use and how their responses are customized to a variety of environmental conditions, such as high temperature, low nutrients, or the presence of chemical compounds, such as antibiotics. This knowledge ultimately enables us to control the behaviors of bacteria to our advantage, including for the production of biofuels or natural products that can be used as drugs. A collection of educational activities introduces students, especially girls from low socioeconomic groups and diverse backgrounds, to the roles that microbes play in our lives. These efforts include interactions with the same cohort of girls and young women over multiple years, encouraging them to see themselves as scientists in their future careers. This program also provides opportunities for graduate students to mentor and teach students starting from age six and generates materials that are broadly disseminated to enable others to teach young students about bacteria and their many functions on our lives, both bad and good. With this award, the Chemistry of Life Processes Program is funding Professors Carlson and Goodpaster at the University of Minnesota to study how microbes translate the complex environment in which they live into the actions required to survive and thrive. Essential to this capability are the two-component system (TCSs), which consist of a histidine kinase and response regulator protein pair. A single organism possesses tens to hundreds of individual TCSs, each reacting with high sensitivity and selectivity to one or a small number of chemical signals. Each chemical message is converted into a defined bacterial action, ranging from growth, motility, biosynthesis of natural products, and pathogenesis. Although numerous individual TCSs have been studied, current methodologies do not enable global assessment of the conditions under which many of them are induced, characterization of the relationship between TCS signal transduction and phenotypic results, or the regulation of response between multiple TCSs. A deeper understanding of TCS-mediated signaling is achieved by: 1) Synthesis and evaluation of molecules to develop an understanding of how to internalize phosphate-containing molecules into bacteria, and 2) Develop chemical proteomics methodologies to pair TCSs with their stimulating molecule(s) and to globally map HK activation by environmental stressors in live cells. The overarching goal is to define the suite of TCSs that are required for a generic stress response and those that are stimulus-specific. This information promotes a deeper understanding of how bacteria are able to utilize their relatively limited genome to orchestrate response to nearly limitless stimuli. This goal is aligned with one of the NSF 10 Big Ideas, Understanding the Rules of Life. A set of rules that predict an organism's observable characteristics and its phenotype, as it relates to the roles of the TCSs, is elucidated. These research goals are complemented with educational and outreach activities, focused on girls from low socioeconomic groups and diverse backgrounds, that introduce them to the roles that microbes play in our everyday lives.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
期刊论文(1)
专著(0)
科研奖励(0)
会议论文
Activity-based ATP analog probes for bacterial histidine kinases
用于细菌组氨酸激酶的基于活性的 ATP 类似物探针
DOI: 10.1016/bs.mie.2022.01.003
发表时间: 2022
期刊: Methods in enzymology
影响因子: --
作者: [Lembke, Hannah K., Carlson, Erin E.]
通讯作者: Carlson, Erin E.
CAREER: Chemoselective Tools for Exploration of Natural Product Chemical Space
  • 批准号:
    1518379
  • 项目类别:
    Continuing Grant
  • 资助金额:
    $37.3万
  • 财政年份:
    2014
  • 负责人:
    Erin Carlson
  • 依托单位:
CAREER: Chemoselective Tools for Exploration of Natural Product Chemical Space
  • 批准号:
    1149443
  • 项目类别:
    Continuing Grant
  • 资助金额:
    $50.0万
  • 财政年份:
    2012
  • 负责人:
    Erin Carlson
  • 依托单位:
海外基金