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Statistical methods for the study of alternative splicing using deep sequencing

Statistical methods for the study of alternative splicing using deep sequencing
使用深度测序研究选择性剪接的统计方法
批准号:
8668079
负责人:
Liang Chen
金额:
$34.95万
依托单位国家:
美国
项目类别:
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-09-05 至 2017-05-31

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中文摘要
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DESCRIPTION (provided by applicant): There is a fundamental gap in understanding how the splicing of a group of exons is co-regulated, how the splicing of an exon is combinatorially controlled by multiple regulators, and what are the general rules of "splicing code." The advent of high-throughput sequencing technologies provides us an unprecedented opportunity to understand the coordinate and combinatorial alternative splicing regulation. However, existing statistical and computational methods are still lagging behind the advanced technologies. The long-term goal is to develop statistical and computational methods to discover principles of alternative splicing regulation in multicellular eukaryotes and explore how regulated splicing contributes to phenotypic complexity. The objective in this particular application is to develop statistically sound methods with computationally efficient algorithms to study alternative splicing and its regulation at both individual and network levels based on deep sequencing data. We will apply our proposed methods to study rat embryonic stem cell differentiation and self-renewal. The specific aims of this proposal include: (1) Develop novel statistical methods to accurately quantify and compare transcriptome complexity based on RNA-seq. (2) Develop novel statistical tools to identify alternative splicing regulatory elements. (3) Develop novel statistical methods to reconstruct splicing regulatory networks. (4) Applications to rat stem cells and development of user-friendly software. Under the first aim, the proposed novel statistical methods will explicitly address the issue of positional bias inherent in RNA-seq to accurately quantify and compare transcriptomes at both the gene level and the transcript isoform level. Under the second aim, different evidence sources will be integrated to distinguish cis regulatory elements for alternative splicing from the false sites matching the motifs by chance. In the third aim, an efficient algorithm will be developed to reduce the model search space to reconstruct splicing regulatory networks. Multiple types of genomic data will be combined to infer regulation relationships. For the applications, this will be the first time to characterize rat embryonic stem cell transcriptomes and infer alternative splicing regulation during their self-renewal and differentiation toward neurons. The proposed methods are innovative. They meet the challenges arisen from the analysis of high- throughput sequencing data, and they fully utilize and integrate multiple types of omics data. The proposed research is significant, because it is expected to advance our understanding of alternative splicing regulation especially in rat embryonic stem cells, and contribute to deciphering the splicing code. Ultimately, such knowledge has the potential to inform the development of preventive and therapeutic interventions for splicing- related diseases, and pave the way for regenerative medicine.
期刊论文(5)
专著(0)
科研奖励(0)
会议论文
An empirical likelihood ratio test robust to individual heterogeneity for differential expression analysis of RNA-seq.
用于 RNA-seq 差异表达分析的对个体异质性稳健的经验似然比检验。
DOI: 10.1093/bib/bbw103
发表时间: 2018
期刊: Briefings in bioinformatics
影响因子: 9.5
作者: [Xu,Maoqi, Chen,Liang]
通讯作者: Chen,Liang
DOI: 10.1007/s12561-012-9064-7
发表时间: 2013-05-01
期刊: STATISTICS IN BIOSCIENCES
影响因子: 1
作者: [Chen, Liang]
通讯作者: Chen, Liang
DOI: 10.1186/s12864-016-3258-1
发表时间: 2017-01-25
期刊: BMC genomics
影响因子: 4.4
作者: [Yang Q, Hu Y, Li J, Zhang X]
通讯作者: Zhang X
Inference of kinship using spatial distributions of SNPs for genome-wide association studies.
使用 SNP 的空间分布进行亲属关系推断,进行全基因组关联研究。
DOI: 10.1186/s12864-016-2696-0
发表时间: 2016
期刊: BMC genomics
影响因子: 4.4
作者: [Lee,Hyokyeong, Chen,Liang]
通讯作者: Chen,Liang
Investigate the immune modulation function of SARS-CoV-2 accessory protein ORF8
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Understand the high pathogenicity and zoonotic transmission of the COVID-19 virus: evasion of host innate immune responses
Sex as a Biological Variable Supplement - Understand the high pathogenicity and zoonotic transmission of the COVID-19 virus: evasion of host innate immune responses
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