Zhu Yi, Zhang Jing-Jing, Xie Kun-Ling, Tang Jie, Liang Wen-Biao, Zhu Rong, Zhu Yan, Wang Bin, Tao Jin-Qiu, Zhi Xiao-Fei, Li Zheng, Gao Wen-Tao, Jiang Kui-Rong, Miao Yi, Xu Ze-Kuan
Department of General Surgery, First Affiliated Hospital, Nanjing Medical University, 300 Guangzhou Road, Nanjing, 210029, Jiangsu Province, People's Republic of China.
Jiangsu Province Academy of Clinical Medicine, Institute of Tumor Biology, Nanjing, 210029, People's Republic of China.
J Transl Med. 2014 Nov 4;12:309. doi: 10.1186/s12967-014-0309-8.
MUC4 plays important roles in the malignant progression of human pancreatic cancer. But the huge length of MUC4 gene fragment restricts its functional and mechanism research. As one of its splice variants, MUC4/Y with coding sequence is most similar to that of the full-length MUC4 (FL-MUC4), together with alternative splicing of the MUC4 transcript has been observed in pancreatic carcinomas but not in normal pancreas. So we speculated that MUC4/Y might be involved in malignant progression similarly to FL-MUC4, and as a research model of MUC4 in pancreatic cancer. The conjecture was confirmed in the present study.
MUC4/Y expression was detected by real-time quantitative reverse transcription polymerase chain reaction (qRT-PCR) using gene-specific probe in the clinic samples. The effects of MUC4/Y were observed by serial in vitro and in vivo experiments based on stable over-expressed cell model. The underlying mechanisms were investigated by sequence-based transcriptome analysis and verified by qRT-PCR, Western blot and enzyme-linked immunosorbent assays.
The detection of clinical samples indicates that MUC4/Y is significantly positive-correlated with tumor invasion and distant metastases. Based on stable forced-expressed pancreatic cancer PANC-1 cell model, functional studies show that MUC4/Y enhances malignant activity in vitro and in vivo, including proliferation under low-nutritional-pressure, resistance to apoptosis, motility, invasiveness, angiogenesis, and distant metastasis. Mechanism studies indicate the novel finding that MUC4/Y triggers malignancy-related positive feedback loops for concomitantly up-regulating the expression of survival factors to resist adverse microenvironment and increasing the expression of an array of cytokines and adhesion molecules to affect the tumor milieu.
In light of the enormity of the potential regulatory circuitry in cancer afforded by MUC4 and/or MUC4/Y, repressing MUC4 transcription, inhibiting post-transcriptional regulation, including alternative splicing, or blocking various pathways simultaneously may be helpful for controlling malignant progression. MUC4/Y- expression model is proven to a valuable tool for the further dissection of MUC4-mediated functions and mechanisms.
MUC4在人类胰腺癌的恶性进展中发挥重要作用。但MUC4基因片段长度巨大,限制了其功能及机制研究。作为其剪接变体之一,编码序列的MUC4/Y与全长MUC4(FL-MUC4)最为相似,且在胰腺癌中观察到MUC4转录本的可变剪接,而在正常胰腺中未观察到。因此,我们推测MUC4/Y可能与FL-MUC4类似地参与恶性进展,并可作为胰腺癌中MUC4的研究模型。本研究证实了这一推测。
在临床样本中使用基因特异性探针通过实时定量逆转录聚合酶链反应(qRT-PCR)检测MUC4/Y表达。基于稳定过表达细胞模型,通过一系列体外和体内实验观察MUC4/Y的作用。通过基于序列的转录组分析研究潜在机制,并通过qRT-PCR、蛋白质免疫印迹和酶联免疫吸附测定进行验证。
临床样本检测表明,MUC4/Y与肿瘤侵袭和远处转移显著正相关。基于稳定强制表达的胰腺癌PANC-1细胞模型,功能研究表明,MUC4/Y在体外和体内增强恶性活性,包括低营养压力下的增殖、抗凋亡能力、运动性、侵袭性、血管生成和远处转移。机制研究表明了一个新发现,即MUC4/Y触发与恶性相关的正反馈回路,同时上调生存因子的表达以抵抗不利的微环境,并增加一系列细胞因子和粘附分子的表达以影响肿瘤微环境。
鉴于MUC4和/或MUC4/Y在癌症中提供巨大的潜在调控网络,抑制MUC4转录、抑制转录后调控(包括可变剪接)或同时阻断各种途径可能有助于控制恶性进展。MUC4/Y表达模型被证明是进一步剖析MUC4介导的功能和机制的有价值工具。