CAREER: Biological tuning of plasma membrane mixing
CAREER: Biological tuning of plasma membrane mixing
批准号:
1552439
负责人:
Sarah Veatch
金额:
$100.42万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2016
资助国家:
美国
项目状态:
已结题
起止时间:
2016-01-01 至 2022-12-31
中文摘要
所有动物细胞都被质膜包围,质膜定义了细胞的外表面。细胞控制其质膜的蛋白质和脂肪组成,以支持广泛的功能,包括作为局部细胞环境的传感器。例如,质膜在适合生长和分裂时,如果细胞应该爬行以及在哪里爬行,或者当某些化合物或某些类别的化合物存在于附近时,质膜感知并与细胞内部通信。这个项目将调查细胞如何以及为什么适应它们的质膜成分来响应它们生长条件的几个变化。其中许多传感功能被认为取决于蛋白质和脂类在质膜中的组织方式,研究人员将研究当细胞调整膜组成时,膜的异质性和传感功能是如何受到影响的。该项目的长期目标是发现细胞如何维持异质膜,以及这种膜结构如何有助于细胞的有效运作。研究人员将通过出版物、会议报告、公开讲座、制定本科课程,以及向物理科学中代表性不足的背景的高中生进行推广,来交流他们的发现。这位首席研究员将为STEM领域的工作培训本科生和研究生。从完整细胞中分离出来的质膜在室温以下冷却时会分离为两个液体,类似于三维的油和水。低温下这种相变的存在预示着在较高温度下存在较小的膜结构域,细胞生活在培养中。这项研究的目的是在生长温度下直接观察完整细胞中的结构域,并确定细胞是否通过调节其膜组成来控制这些结构域的物理性质,从而优化细胞功能。这项研究将使用常规的细胞生物学、生化和生物物理技术以及尖端的实验方法,包括超分辨率荧光定位显微镜成像膜组分的纳米级组织和定量脂组学详细描述质膜脂组成。
英文摘要
All animal cells are surrounded by a plasma membrane that defines the outer surface of the cell. Cells control the protein and lipid composition of their plasma membrane to support a broad range of functions, including acting as a sensor of the local cellular environment. For example, the plasma membrane senses and communicates to the cell interior when it is appropriate to grow and divide, if and where the cell should crawl, or when certain compounds or classes of compounds are present in the vicinity. This project will investigate how and why cells adapt their plasma membrane composition in response to several changes in their growth conditions. Many of these sensing functions are thought to depend on how proteins and lipids are organized within the plasma membrane, and the researchers will investigate how both membrane heterogeneity and sensing functions are impacted as cells adjust membrane composition. The long term goals of the project are to discover how cells maintain a heterogeneous membrane, and how this membrane structure contributes to the efficient functioning of the cell. The researchers will communicate their findings through publications, conference presentations, public lectures, development of undergraduate curricula, and outreach to high school students from backgrounds that are under-represented in the physical sciences. The principle investigator will train undergraduate and graduate students for careers in STEM fields.Plasma membranes isolated from intact cells separate into two liquid phases when cooled below room temperature, similar to oil and water in three dimensions. The presence of this phase transition at low temperature predicts the existence of smaller membrane domains at the higher temperatures where cells live in culture. The objective of the research is to directly observe domains in intact cells at growth temperature, and to determine if cells tune their membrane composition to control the physical properties of these domains in order to optimize cellular functions. The research will use conventional cell biological, biochemical, and biophysical techniques as well as cutting edge experimental methods, including super-resolution fluorescence localization microscopy to image the nano-scale organization of membrane components and quantitative lipidomics to detail plasma membrane lipid composition.
期刊论文(1)
专著(0)
科研奖励(0)
会议论文
DOI:
10.1016/j.bpj.2016.06.039
发表时间:
2016-08-09
期刊:
BIOPHYSICAL JOURNAL
影响因子:
3.4
作者:
[Machta, Benjamin B., Gray, Ellyn, Veatch, Sarah L.]
通讯作者:
Veatch, Sarah L.
Collaborative Research: Assembly of non-lipid components by heterogeneous membranes
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批准号:1905600
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项目类别:Standard Grant
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资助金额:$25.31万
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财政年份:2019
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负责人:Sarah Veatch
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依托单位:
海外基金