Proteomics

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Comprehensive Proteomic Atlas of Skin Biomatrix Scaffolds Reveals a Supportive Microenvironment for Epidermal Development


ABSTRACT: Skin is a thin, stratified tissue covering the entire body. It is microscopically defined by layers of epidermal epithelial cells separated from cells in the dermis by a basement membrane (BM), the skin’s extracellular matrix (ECM). The skin’s ECM binds the layers together to form the tissue’s organization and plays important roles in regulation of skin morphogenesis and repair. In this study, skin ECM components have been identified and their interactions with cells characterized using large-scale, quantitative proteomic analysis of skin biomatrix scaffolds, decellularized tissue extracts highly enriched in skin ECM. These were used to quantify structure and function of the skin’s matrix, referred to as the Matrisome, comprised of core ECM components (collagens, proteoglycans and glycoproteins) and of ECM-associated factors, matrix-bound, soluble signals that are key regulators of epidermal development. Analyses on protein-protein interactions of ECMs showed a mechanistic link between hemidesmosome assembly and epidermal homeostasis. This was achieved largely through the integrated network of the hemidesmosome complex and associated proteins mediating anchorage of epidermal stem/progenitors onto skin ECM. These results highlight the power of large-scale proteomics to identify the components and functions of the skin Matrisome regulating tissue homeostasis and ECM remodeling.

ORGANISM(S): Sus Scrofa

SUBMITTER: Yunfang Wang  

PROVIDER: PXD014454 | iProX | Mon Jul 01 00:00:00 BST 2019

REPOSITORIES: iProX

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Publications

Comprehensive proteomic atlas of skin biomatrix scaffolds reveals a supportive microenvironment for epidermal development.

Leng Ling L   Ma Jie J   Sun Xuer X   Guo Baolin B   Li Fanlu F   Zhang Wei W   Chang Mingyang M   Diao Jinmei J   Wang Yi Y   Wang Wenjuan W   Wang Shuyong S   Zhu Yunping Y   He Fuchu F   Reid Lola M LM   Wang Yunfang Y  

Journal of tissue engineering 20200101


Biomaterial scaffolds are increasingly being used to drive tissue regeneration. The limited success so far in human tissues rebuilding and therapy application may be due to inadequacy of the functionality biomaterial scaffold. We developed a new decellularized method to obtain complete anatomical skin biomatrix scaffold in situ with extracellular matrix (ECM) architecture preserved, in this study. We described a skin scaffold map by integrated proteomics and systematically analyzed the interacti  ...[more]

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