CAREER: Expanding the Dimensions of Computational Epigenomic Modeling and Analysis
CAREER: Expanding the Dimensions of Computational Epigenomic Modeling and Analysis
批准号:
1254200
负责人:
Jason Ernst
金额:
$99.09万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2013
资助国家:
美国
项目状态:
已结题
起止时间:
2013-07-01 至 2019-06-30
中文摘要
一个人体内的每一种细胞本质上都共享相同的DNA序列,然而不同的细胞类型可能具有非常不同的功能。调节不同细胞类型DNA序列解释的是DNA上的表观遗传标记和DNA包裹的组蛋白尾部的表观遗传标记。大规模平行测序已经使跨许多细胞类型的多个表观遗传标记的全基因组制图成为可能。该研究将在几个重要的新维度上推进表观基因组数据建模和分析的计算方法。一个方面涉及开发计算方法来模拟表观基因组随时间的变化。许多重要的生物过程现在正在通过绘制多个时间点的多个表观遗传标记来研究,这就需要新的计算方法来建模和分析这些数据。另一个维度涉及计算方法,以预测标记未被映射的细胞类型中表观遗传标记的全基因组信号。这是一个关键的计算问题,因为它是不可行的实验绘制每一个表观遗传标记在每一个细胞类型的兴趣。该项目的第三个维度涉及计算方法,通过将多个部分信息数据源整合到这些相互作用中,将表观基因组图谱确定的假定的远端调控元件与它们调节的靶基因联系起来。作为CAREER项目的一部分,Jason Ernst将为加州大学洛杉矶分校的计算生物科学合作实验室的创建做出贡献,旨在同时增加对计算方法的生物研究人员的培训,并促进计算和实验研究人员之间的合作。一个新的以研究为重点的研究生研讨会,涵盖了计算表观基因组学的研究课题。在此基础上,还将创建本科生物信息学课程的课程设计。本科生、少数族裔学生和女性计算机科学专业学生将被招募参与研究。所有创建的教学材料将在互联网上传播。在这个项目下开发的计算方法将作为开放源码软件广泛传播,并可能被广泛的生物学研究人员用于许多重要的生物学应用。
英文摘要
Every cell type within an individual essentially shares the same DNA sequence, yet different cell types can have very different functions. Modulating the interpretation of the DNA sequence in different cell types are epigenetic marks on the DNA and on the tails of the histone proteins around which that DNA is wrapped. Massively parallel sequencing has enabled genome-wide mapping of multiple epigenetic marks across a number of cell types. The research will advance computational approaches for modeling and analyzing epigenomic data in several important new dimensions. One dimension involves developing computational methods for modeling epigenomic changes over time. A number of important biological processes are now being studied by mapping multiple epigenetic marks at multiple time points raising the need for new computational approaches to model and analyze this data. Another dimension involves computational approaches to predicting the genome- wide signals of epigenetic marks in cell types in which a mark is not mapped. This is a key computational problem because it is unfeasible to experimentally map every epigenetic mark in every cell type of interest. A third dimension of the project involves computational methods to associate putative distal regulatory elements identified by epigenomic maps with the target genes they regulate by integrating multiple partially informative data sources to these interactions.As part of the CAREER project Jason Ernst will contribute to the creation of a computational biosciences collaboratory at UCLA, aimed at simultaneously increasing the training of biological researchers in computational approaches and facilitating collaborations between computational and experimental researchers. A new research- focused graduate seminar that covers research topics in computational epigenomics will be created. Course projects for an undergraduate bioinformatics course based on the research will also be created. Undergraduate students, under-represented minority students, and women computer science students will be recruited to participate in research. All instructional material created will be disseminated on the internet. Computational methods developed under this project will be broadly disseminated as open source software and will likely be used by a wide range of biological researchers for a number of important biological applications.
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会议论文
EAGER: Understanding the genomes and strain mutations of SARS-CoV-2 and other viruses using comparative and population genetic approaches
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批准号:2125664
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项目类别:Standard Grant
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资助金额:$30.0万
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财政年份:2021
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负责人:Jason Ernst
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依托单位:
Postdoctoral Research Fellowships in Biology for FY 2009
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批准号:0905968
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项目类别:Fellowship Award
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资助金额:$12.3万
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财政年份:2009
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负责人:Jason Ernst
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依托单位:
海外基金