Transcriptomic signatures across human tissues identify functional rare genetic variation

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Transcriptomic signatures across human tissues identify functional rare  genetic variation
Identifying disease-critical cell types and cellular processes by integrating single-cell RNA-sequencing and human genetics
Transcriptomic signatures across human tissues identify functional rare  genetic variation
Promises and challenges in pharmacoepigenetics, Cambridge Prisms: Precision Medicine
Transcriptomic signatures across human tissues identify functional rare  genetic variation
Integrated analysis of genomic and transcriptomic data for the discovery of splice-associated variants in cancer
Transcriptomic signatures across human tissues identify functional rare  genetic variation
Frontiers Rare diseases of epigenetic origin: Challenges and opportunities
Transcriptomic signatures across human tissues identify functional rare  genetic variation
The functional impact of rare variation across the regulatory cascade - ScienceDirect
Transcriptomic signatures across human tissues identify functional rare  genetic variation
Functional characterization of regionally variable transcriptomic
Transcriptomic signatures across human tissues identify functional rare  genetic variation
Spatial Transcriptomics: Emerging Technologies in Tissue Gene Expression Profiling
Transcriptomic signatures across human tissues identify functional rare  genetic variation
Fine mapping spatiotemporal mechanisms of genetic variants underlying cardiac traits and disease
Transcriptomic signatures across human tissues identify functional rare  genetic variation
Single-cell and spatial transcriptomics: deciphering brain complexity in health and disease
Transcriptomic signatures across human tissues identify functional rare  genetic variation
Identifying common transcriptome signatures of cancer by interpreting deep learning models, Genome Biology
Transcriptomic signatures across human tissues identify functional rare  genetic variation
Research
Transcriptomic signatures across human tissues identify functional rare  genetic variation
Frontiers Transcriptomic analysis of paired healthy human skeletal muscles to identify modulators of disease severity in DMD
Transcriptomic signatures across human tissues identify functional rare  genetic variation
An RNA-informed dosage sensitivity map reflects the intrinsic functional nature of genes - ScienceDirect
Transcriptomic signatures across human tissues identify functional rare  genetic variation
Genome-wide detection of human variants that disrupt intronic branchpoints
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