Recent Insights into Human Endometrial Peptidases in Blastocyst Implantation via Shedding of Microvesicles

Int J Mol Sci. 2021 Dec 15;22(24):13479. doi: 10.3390/ijms222413479.

Abstract

Blastocyst implantation involves multiple interactions with numerous molecules expressed in endometrial epithelial cells (EECs) during the implantation window; however, there is limited information regarding the molecular mechanism underlying the crosstalk. In blastocysts, fibronectin plays a major role in the adhesion of various types of cells by binding to extracellular matrix proteins via the Arg-Gly-Asp (RGD) motif. In EECs, RGD-recognizing integrins are important bridging receptors for fibronectin, whereas the non-RGD binding of fibronectin includes interactions with dipeptidyl peptidase IV (DPPIV)/cluster of differentiation (CD) 26. Fibronectin may also bind to aminopeptidase N (APN)/CD13, and in the endometrium, these peptidases are present in plasma membranes and lysosomal membranes. Blastocyst implantation is accompanied by lysosome exocytosis, which transports various peptidases and nutrients into the endometrial cavity to facilitate blastocyst implantation. Both DPPIV and APN are released into the uterine cavity via shedding of microvesicles (MVs) from EECs. Recently, extracellular vesicles derived from endometrial cells have been proposed to act on trophectoderm cells to promote implantation. MVs are also secreted from embryonal stem cells and may play an active role in implantation. Thus, crosstalk between the blastocyst and endometrium via extracellular vesicles is a new insight into the fundamental molecular basis of blastocyst implantation.

Keywords: aminopeptidase N; blastocyst implantation; dipeptidyl peptidase IV; extracellular vesicles; lysosome.

Publication types

  • Review

MeSH terms

  • Blastocyst / metabolism*
  • Cell Adhesion
  • Cell Membrane / metabolism
  • Cell-Derived Microparticles / physiology
  • Dipeptidyl Peptidase 4 / metabolism
  • Embryo Implantation / physiology*
  • Embryo Transfer / methods
  • Endometrium / metabolism
  • Endometrium / physiology
  • Epithelial Cells / metabolism
  • Extracellular Matrix Proteins / metabolism
  • Extracellular Vesicles / metabolism
  • Female
  • Fibronectins / metabolism
  • Humans
  • Integrins / metabolism
  • Lysosomes / metabolism
  • Peptide Hydrolases / metabolism*
  • Uterus / metabolism

Substances

  • Extracellular Matrix Proteins
  • FN1 protein, human
  • Fibronectins
  • Integrins
  • Peptide Hydrolases
  • DPP4 protein, human
  • Dipeptidyl Peptidase 4