Corroborating evidence for aberrant expression of histone deacetylase 8 in endometriosis

Author:

Zheng Hanxi1,Liu Xishi12,Guo Sun‐Wei23ORCID

Affiliation:

1. Department of Gynecology Shanghai Obstetrics and Gynecology Hospital, Fudan University Shanghai China

2. Shanghai Key Laboratory of Female Reproductive Endocrine‐Related Diseases Fudan University Shanghai China

3. Research Institute, Shanghai Obstetrics and Gynecology Hospital Fudan University Shanghai China

Abstract

AbstractPurposeThe aim of this study was to evaluate the dynamic change in staining of Class I HDACs and Hdac6 in lesions harvested serially from different time points in mice with induced endometriosis. In addition, the effect of Hdac8 activation as well as Hdac8 and Hdac6 inhibition on lesional progression and fibrogenesis was evaluated.MethodsImmunohistochemistry analysis of Class I HDACs and Hdac6 in serially harvested lesion samples in mouse. Hdac8 activation, as well as Hdac6/8 inhibition, was evaluated in mice with induced endometriosis.ResultsWe found a progressive increase in lesional staining of Hdac1, Hdac8, and Hdac6 and gradual decrease in Hdac2 staining and consistently reduced staining of Hdac3 during the course of lesional progression. The stromal Hdac8 staining correlated most prominently with all markers of lesional fibrosis. Hdac8 activation significantly accelerated the progression and fibrogenesis of endometriotic lesions. In contrast, specific inhibition of Hdac8 or Hdac6, especially of Hdac8, significantly hindered lesional progression and fibrogenesis.ConclusionsHdac8 is progressively and aberrantly overexpressed as endometriotic lesions progress. This, along with the documented HDAC1 upregulation in endometriosis and the overwhelming evidence for the therapeutic potentials of HDACIs, calls for further and in‐depth investigation of epigenetic aberrations of endometriosis in general and of HDACs in particular.

Funder

National Natural Science Foundation of China

Shanghai Hospital Development Center

Publisher

Wiley

Subject

Cell Biology,Reproductive Medicine

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