PO.MCB02.01 · 分子与细胞生物学
神经肽Y Y1受体抑制诱导自噬以限制结直肠癌进展
Neuropeptide Y Y1 receptor inhibition induces autophagy to limit colorectal cancer progression
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
引言:结直肠癌(CRC)中自噬失调会增加细胞增殖、破坏肠上皮细胞稳态,并促成治疗耐药。因此,确定CRC细胞逃避自噬的机制对开发新的治疗策略十分重要。本研究旨在探讨神经肽Y(NPY)——一种在CRC中过表达的神经激素——及其受体在调控CRC细胞生长和存活中的作用。
方法:通过Western blot分析确定NPY和Y1受体(Y1R)在CT26(ATCC)和MC38(Kerafast)小鼠CRC细胞中的表达状态。通过免疫组化确定NPY和Y1R在人结肠腺癌和小鼠结肠癌组织中的表达。进行体外细胞增殖实验和流式细胞术,以确定在CT26和MC38细胞中通过拮抗剂(BIBO3304三氟乙酸盐)或siRNA介导的Y1R沉默阻断Y1R的效应。还进行了Western blot和qRT-PCR,以确定阻断/沉默Y1R后与自噬相关的变化。为阐明Y1R抑制诱导自噬的潜在机制,对信号通路进行了分析。在体内评估了Y1R抑制对肿瘤生长和进展的影响。
结果与结论:我们的分析揭示,人结肠腺癌和小鼠原位CRC组织中NPY和Y1R的表达显著升高。NPY主要由表面表达Y1R的CRC细胞分泌。用拮抗剂和siRNA抑制Y1R均导致CRC细胞增殖显著受抑并自噬增加。同时,随着Y1R的抑制,自噬标志物(ATG3、ATG12、ATG16L、LC3A、ATG5、LC3B和BECN1)的水平显著增强。进一步分析揭示,CRC细胞中自噬是通过AMPK激活诱导的,进而导致mTOR抑制。因此,我们的结果表明,用临床安全的拮抗剂靶向Y1R可能是一种有前景的治疗策略,用以抑制肿瘤生长并恢复CRC中自噬介导的肿瘤抑制。这些发现提示NPY/Y1R轴在调控CRC细胞行为中具有决定性作用,并表明用临床安全的Y1R抑制剂靶向Y1R以改善CRC治疗结局的潜力。
查看英文原文 English abstract
Introduction: Deregulation of autophagy in colorectal cancer (CRC) increases cell proliferation, disrupts intestinal epithelial cell homeostasis, and contributes to therapeutic resistance. Therefore, determining the mechanisms by which CRC cells evade autophagy is important for developing new therapeutic strategies. The present study aimed to investigate the role of neuropeptide Y (NPY), a neurohormone that is overexpressed in CRC, and its receptors in regulating CRC cell growth and survival.
Methods: The status of NPY and Y1 receptor (Y1R) expressions in CT26 (ATCC) and MC38 (Kerafast) mouse CRC cells was determined by western blot analysis. NPY and Y1R expressions in human colon adenocarcinomas and mouse colon cancer tissues were determined by immunohistochemistry. In vitro cell proliferation assays and flow cytometry were performed to determine the effects of blocking Y1R by antagonist (BIBO3304 trifluoroacetate) or by siRNA-mediated silencing of Y1R in CT26 and MC38 cells. Western blot and qRT-PCR were also performed to determine the changes related to autophagy upon blocking/silencing Y1R. To elucidate the underlying mechanism of Y1R inhibition-induced autophagy, the signaling pathway was analyzed. The impact of the Y1R inhibition on tumor growth and progression was assessed in vivo.
Results and Conclusion: Our analysis revealed a significant increase in NPY and Y1R expressions in human colon adenocarcinoma and mouse orthotopic CRC tissues. NPY is primarily secreted by CRC cells that express Y1R on their surfaces. Suppression of Y1R with both an antagonist and siRNA resulted in significant inhibition of proliferation and increased autophagy in CRC cells. Also, the levels of autophagy markers (ATG3, ATG12, ATG16L, LC3A, ATG5, LC3B and BECN1) were significantly enhanced with the inhibition of Y1R. Further analysis revealed that autophagy was induced in CRC cells via AMPK activation, leading to mTOR inhibition. Our results, therefore, indicate that targeting Y1R with clinically safe antagonists may represent a promising therapeutic strategy to suppress tumor growth and restore autophagy-mediated tumor suppression in CRC. These findings suggest a decisive role for the NPY/Y1R axis in regulating CRC cell behavior and indicate the potential of targeting Y1R with clinically safe Y1R inhibitors to improve therapeutic outcomes in CRC.
利益披露 Disclosure
S. Kakkat, None..
P. Suman, None..
A. Richter, None..
S. McClellan, None..
D. Chakroborty, None..
C. Sarkar, None.