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Defects in white adipose tissue lipolysis drive multiple aspects of cardiometabolic disease but the transcriptional framework controlling this process has not been established. To address this, we performed a targeted perturbation screen in primary human adipocytes. Our analyses identified 37 transc...
ORGANISM(S): Homo sapiens (Human) 
2024-01-17 | PXD046964 | Pride
Defects in white adipose tissue lipolysis drive multiple aspects of cardiometabolic disease but the transcriptional framework controlling this process has not been established. To address this, we performed a targeted perturbation screen in primary human adipocytes. Our analyses identified 37 transc...
ORGANISM(S): Homo sapiens 
2023-11-24 | GSE247817 | GEO
Defects in white adipose tissue lipolysis drive multiple aspects of cardiometabolic disease but the transcriptional framework controlling this process has not been established. To address this, we performed a targeted perturbation screen in primary human adipocytes. Our analyses identified 37 transc...
ORGANISM(S): Homo sapiens 
2023-11-24 | GSE247815 | GEO
Defects in white adipose tissue lipolysis drive multiple aspects of cardiometabolic disease but the transcriptional framework controlling this process has not been established. To address this, we performed a targeted perturbation screen in primary human adipocytes. Our analyses identified 37 transc...
ORGANISM(S): Homo sapiens 
2023-11-24 | GSE247814 | GEO
Defects in white adipose tissue lipolysis drive multiple aspects of cardiometabolic disease but the transcriptional framework controlling this process has not been established. To address this, we performed a targeted perturbation screen in primary human adipocytes. Our analyses identified 37 transc...
ORGANISM(S): Homo sapiens 
2023-11-24 | GSE247813 | GEO
Transcriptional determinants of lipid mobilization in human adipocytes [CUT&Tag]
Transcriptional determinants of lipid mobilization in human adipocytes [ATAC-seq]
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