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Anterior gradient 2 is induced in cutaneous wound and promotes wound healing through its adhesion domain.

FEBS J.2017 Sep;284(17):2856-2869. doi:10.1111/febs.14155. Epub 2017 Jul 20
Qi Zhu 1 , Hitesh Bhagavanbhai Mangukiya 1 , Dhahiri Saidi Mashausi 1 , Hao Guo 1 , Hema Negi 1 , Siva Bharath Merugu 1 , Zhenghua Wu 1 , Dawei Li 2
Qi Zhu 1 , Hitesh Bhagavanbhai Mangukiya 1 , Dhahiri Saidi Mashausi 1 , Hao Guo 1 , Hema Negi 1 , Siva Bharath Merugu 1 , Zhenghua Wu 1 , Dawei Li 2
+ et al

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Author information
  • 1 School of Pharmacy, Shanghai Jiao Tong University, China.
  • 2 Engineering Research Center of Cell and Therapeutic Antibody of Ministry of Education, Shanghai Jiao Tong University, China.

摘要


Anterior gradient 2 (AGR2), a member of protein disulfide isomerase (PDI) family, is both located in cytoplasm and secreted into extracellular matrix. The orthologs of AGR2 have been linked to limb regeneration in newt and wound healing in zebrafish. In mammals, AGR2 influences multiple cell signaling pathways in tumor formation and in normal cell functions related to new tissue formation like angiogenesis. However, the function of AGR2 in mammalian wound healing remains unknown. This study aimed to investigate AGR2 expression and its function during skin wound healing and the possible application of external AGR2 in cutaneous wound to accelerate the healing process. Our results showed that AGR2 expression was induced in the migrating epidermal tongue and hyperplastic epidermis after skin excision. Topical application of recombinant AGR2 significantly accelerated wound-healing process by increasing the migration of keratinocytes (Kera.) and the recruitment of fibroblasts (Fibro.) near the wounded area. External AGR2 also promoted the migration of Kera. and Fibro. in vitro in a dose-dependent manner. The adhesion domain of AGR2 was required for the formation of focal adhesions in migrating Fibro., leading to the directional migration along AGR2 gradient. These results indicate that recombinant AGR2 accelerates skin wound healing through regulation of Kera. and Fibro. migration, thus demonstrating its potential utility as an alternative strategy of the therapeutics to accelerate the healing of acute or chronic skin wounds.

KEYWORDS: anterior gradient 2, cell migration, fibroblasts, keratinocytes, wound healing