Proteomics

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Multilayered Omics Revealsl Sex- and Depot-Dependent Adipose Progenitor Cell Heterogeneity


ABSTRACT: White adipose tissue (WAT) harbors functionally diverse subpopulations of adipose progenitor cells that differentially impact tissue plasticity in a sex- and depot-dependent manner. To date, the molecular basis of this cellular heterogeneity has not been fully defined. Here, we describe a multilayered omics approach to dissect adipose progenitor cell heterogeneity from in three dimensions: progenitor subpopulation, sex, and anatomical localization. We applied state-of-the-art mass spectrometry methods to quantify 4870 proteins in eight different stromal cell populations from perigonadal and inguinal WAT of male and female mice and acquired transcript expression levels of 15477 genes using RNA-seq. Notably, our data highlight the molecular signatures defining sex differences in PDGFR+ preadipocyte differentiation and identify regulatory pathways that functionally distinguish adipose tissue PDGFRb+ subpopulations. The data are freely accessible as a resource at "Pread Profiler. Together, the multilayered omics analysis provides unprecedented insights into adipose stromal cell heterogeneity.

INSTRUMENT(S): Q Exactive Plus

ORGANISM(S): Mus Musculus (mouse)

TISSUE(S): Adipose-derived Stromal Cell

SUBMITTER: Midy Wu  

LAB HEAD: Yibo Wu

PROVIDER: PXD023829 | Pride | 2023-03-11

REPOSITORIES: Pride

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Publications

Multilayered omics reveal sex- and depot-dependent adipose progenitor cell heterogeneity.

Shan Bo B   Barker Clive S CS   Shao Mengle M   Zhang Qianbin Q   Gupta Rana K RK   Wu Yibo Y  

Cell metabolism 20220420 5


Single-cell RNA sequencing (scRNA-seq) has revealed that adult white adipose tissue (WAT) harbors functionally diverse subpopulations of mesenchymal stromal cells that differentially impact tissue plasticity. To date, the molecular basis of this cellular heterogeneity has not been fully defined. Here, we describe a multilayered omics approach to dissect adipose progenitor cell heterogeneity in three dimensions: progenitor subpopulation, sex, and anatomical localization. We applied state-of-the-a  ...[more]

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