Gene Discovery in Autosomal Dominant Focal Segmental Glomerulosclerosis
Gene Discovery in Autosomal Dominant Focal Segmental Glomerulosclerosis
批准号:
8890150
负责人:
Rasheed Adebayo Gbadegesin
金额:
$42.93万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-09-18 至 2016-06-30
关键词:
AffectAreaBioinformaticsBiological AssayBiologyCodeDNA Sequence AlterationDataData LinkagesData SetDiseaseEnd stage renal failureEvaluationEventFamilyFocal Segmental GlomerulosclerosisFunctional disorderGene MutationGene TargetingGenesGeneticGenetic RecombinationGenomic approachGenomicsGrantHealthHumanIn VitroIndividualInheritedInjuryIon ChannelKidneyKidney DiseasesLeadMendelian disorderMolecularMutationNaturePathogenesisPathologyPatternPrevalenceProcessPropertyProteinsRNA SplicingRenal glomerular diseaseResourcesTimeVariantWT1 geneWorkZebrafishbasecohorteffective therapyexomeexome sequencinggene discoverygenetic linkage analysisgenetic technologygenetic variantgenome-wide linkageimprovedin vivokindrednew therapeutic targetnovelnovel therapeutic interventionpositional cloningscreeningsegregationsuccesstool
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Focal segmental glomerulosclerosis (FSGS) is a frequent cause of end-stage renal disease. The pathogenesis of FSGS has not been precisely defined and there are no consistently effective treatments. Recent studies identifying causal genes in rare, inherited FSGS, including our own study, have associated mutations in at least six genes with familial FSGS, and each discovery has clarified molecular mechanisms of glomerular injury. To build on this productive line of inquiry, we have ascertained and carefully characterized 118 families with familial FSGS. We have screened the remainder of our families for mutations in genes known to cause FSGS and identified the causal mutations in an additional 6 kindreds; the genetic basis of disease in the remaining 111 families is unknown. The objective of this proposal is to use this valuable and unique family resource to systematically identify causal genes for familial FSGS. Limitations of current conventional linkage and positional cloning approaches include their requirement for large, multiplex families. In addition, narrowing candidate areas in traditional linkage analysis can be difficult due to larg regions that lack recombination events and hence these regions have required cumbersome and lengthy screening for causative mutations. Powerful new genetic tools can facilitate this screening process and improve variant discovery in smaller families. In particular, efficient whole-exome sequencing, the targeted capture of protein-coding gene sequences, should be particularly useful in our studies since most Mendelian disorders are caused by mutations affecting exomes of the target gene. Thus, by combining genome-wide linkage analysis (GWLS) and whole-exome sequencing, we can maximize impact of our family data and accelerate identification of novel mutations in FSGS. In preliminary studies, we have used this combination to identify a novel variant in the WT1 (Wilms' Tumor-1) gene in one FSGS family, and we have evidence suggesting it is the causal mutation. This success provides proof-of-concept and provides a roadmap of how genes will be identified and evaluated in the proposed studies. Our hypothesis is that causes of inherited FSGS in our cohort of families will be sequence variants in the coding region of genes not previously associated with familial FSGS. We aim to: 1) Use GWLS and whole-exome sequencing to identify genetic variants associated with familial FSGS. 2) Characterize functional consequences of candidate causative mutations and 3) Determine the prevalence in the Duke FSGS dataset of these new causative mutations identified in Aim 2. Any genes found to have causative mutations will be sequenced in the remaining families and take full advantage of our family resource. By combining genome-wide linkage analysis (GWLS), whole-exome sequencing, and characterization of variants' functional consequences, we will significantly improve understanding of normal glomerular biology and of the pathogenesis of FSGS and related glomerular diseases. Moreover, our discoveries are likely to reveal new opportunities to improve therapy for a disease that currently has few effective treatments.
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会议论文
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Wake Forest Collaborative Application for an APOLLO Clinical Center
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财政年份:2017
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依托单位:
13/14 APOL1 Long-term Kidney Transplantation Outcomes Network (APOLLO) Clinical Center
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批准号:10728380
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资助金额:$18.01万
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负责人:Rasheed Adebayo Gbadegesin
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依托单位:
Functional and Phenotypic Characterization of a New FSGS Gene
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批准号:8813151
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项目类别:
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资助金额:$35.25万
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财政年份:2014
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依托单位:
Functional and Phenotypic Characterization of a New FSGS Gene
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批准号:8932678
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项目类别:
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财政年份:2014
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依托单位:
IDENTIFICATION OF VUR GENES BY COMBINED LINKAGE ANALYSIS AND EXOME SEQUENCING
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批准号:8507844
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依托单位:
Functional and Phenotypic Characterization of a New FSGS Gene
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财政年份:2013
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依托单位:
IDENTIFICATION OF VUR GENES BY COMBINED LINKAGE ANALYSIS AND EXOME SEQUENCING
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依托单位:
Gene Discovery in Autosomal Dominant Focal Segmental Glomerulosclerosis
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批准号:9103098
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项目类别:
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负责人:Rasheed Adebayo Gbadegesin
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依托单位:
Gene Discovery in Autosomal Dominant Focal Segmental Glomerulosclerosis
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批准号:8708853
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依托单位:
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依托单位:
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依托单位:
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