Institute of Hematology, Provincial Key Laboratory of Biotechnology, School of Medicine, Northwest University, Xi'an, Shaanxi, 710069, P.R. China.
College of Bioresources Chemical and Materials Engineering, Shaanxi University of Science & Technology, Xi'an, Shaanxi, 710069, P.R. China.
Theranostics. 2024 Aug 19;14(13):5184-5199. doi: 10.7150/thno.93879. eCollection 2024.
Chemoresistance is a key factor contributing to the failure of anti-breast cancer chemotherapy. Although abnormal glycosylation is closely correlated with breast cancer progression, the function of glycoconjugates in chemoresistance remains poorly understood. Levels and regulatory roles of bisecting N-acetylglucosamine (GlcNAc) in chemoresistant breast cancer cells were determined in vitro and in vivo. Glycoproteomics guided identification of site-specific bisecting GlcNAc on P-glycoprotein (P-gp). Co-immunoprecipitation coupled mass spectrometry (Co-IP-MS) and proximity labelling MS identified the interactome of P-gp, and the biological function of site-specific bisecting GlcNAc was investigated by site/truncation mutation and structural simulations. Bisecting GlcNAc levels were reduced in chemoresistant breast cancer cells, accompanied by an enhanced expression of P-gp. Enhanced bisecting GlcNAc effectively reversed chemoresistance. Mechanical study revealed that bisecting GlcNAc impaired the association between Ezrin and P-gp, leading to a decreased expression of membrane P-gp. Bisecting GlcNAc suppressed VPS4A-mediated P-gp recruitment into microvesicles, and chemoresistance transmission. Structural dynamics analysis suggested that bisecting GlcNAc at Asn494 introduced structural constraints that rigidified the conformation and suppressed the activity of P-gp. Our findings highlight the crucial role of bisecting GlcNAc in chemoresistance and suggest the possibility of reversing chemoresistance by modulating the specific glycosylation in breast cancer therapy.
耐药性是导致抗乳腺癌化疗失败的一个关键因素。尽管异常糖基化与乳腺癌的进展密切相关,但糖缀合物在耐药性中的作用仍知之甚少。本研究在体外和体内确定了双分支 N-乙酰葡萄糖胺(GlcNAc)在耐药性乳腺癌细胞中的水平和调节作用。糖组学指导鉴定 P 糖蛋白(P-gp)上的特异性双分支 GlcNAc。共免疫沉淀结合质谱(Co-IP-MS)和邻近标记 MS 鉴定了 P-gp 的相互作用组,并通过位点/截断突变和结构模拟研究了特异性双分支 GlcNAc 的生物学功能。耐药性乳腺癌细胞中双分支 GlcNAc 水平降低,同时 P-gp 表达增强。增强的双分支 GlcNAc 可有效逆转耐药性。力学研究表明,双分支 GlcNAc 破坏了 Ezrin 与 P-gp 之间的关联,导致膜 P-gp 表达减少。双分支 GlcNAc 抑制了 VPS4A 介导的 P-gp 募集到微泡中,以及耐药性的传递。结构动力学分析表明,双分支 GlcNAc 在 Asn494 处引入了结构约束,使 P-gp 的构象僵化并抑制其活性。本研究结果强调了双分支 GlcNAc 在耐药性中的关键作用,并提示通过调节乳腺癌治疗中的特定糖基化来逆转耐药性的可能性。