Reduced O-GlcNAcylation of SNAP-23 promotes cisplatin resistance by inducing exosome secretion in ovarian cancer

SNAP-23 O-GlcNAc糖基化水平降低可通过诱导卵巢癌细胞外泌体分泌促进顺铂耐药性。

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作者:Luomeng Qian # ,Xiaoshan Yang # ,Shaohui Li # ,Hang Zhao ,Yunge Gao ,Shuhui Zhao ,Xiaohui Lv ,Xiyuan Zhang ,Lingxia Li ,Lianghao Zhai ,Fuxing Zhou ,Biliang Chen

Abstract

Exosomes have been associated with chemoresistance in various cancers, but such a role in ovarian cancer is not yet clear. Here, using in vitro cell-based and in vivo mouse model experiments, we show that downregulation of O-GlcNAcylation, a key post-translational protein modification, promotes exosome secretion. This increases exosome-mediated efflux of cisplatin from cancer cells resulting in chemoresistance. Mechanistically, our data indicate that downregulation of O-GlcNAclation transferase (OGT) reduces O-GlcNAclation of SNAP-23. Notably, O-GlcNAcylation of SNAP-23 is vital for regulating exosome release in ovarian cancer cells. Reduced O-GlcNAclation of SNAP-23 subsequently promotes the formation of soluble N-ethylmaleimide-sensitive factor attachment protein receptor (SNARE) complex consisting of SNAP-23, VAMP8, and Stx4 proteins. This enhances exosome release causing chemoresistance by increasing the efflux of intracellular cisplatin.

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