Zhu Yi, Zhang Jing-Jing, Peng Yun-Peng, Liu Xian, Xie Kun-Ling, Tang Jie, Jiang Kui-Rong, Gao Wen-Tao, Tian Lei, Zhang Kai, Xu Ze-Kuan, Miao Yi
Pancreas Institute of Nanjing Medical University, Nanjing, People's Republic of China.
Pancreas Center, The First Affiliated Hospital of Nanjing Medical University, Nanjing, People's Republic of China.
Oncotarget. 2017 Feb 7;8(6):10385-10399. doi: 10.18632/oncotarget.14420.
MUC4 mucin is well known as an important potential target to overcome pancreatic cancer. Three unique domains (NIDO, AMOP, and vWD) with unclear roles only present in MUC4 but are not found in other membrane-bound mucins. Our previous studies first reported that its splice variant, MUC4/Y can be a model of MUC4 (MUC4 gene fragment is more than 30KB, too huge to clone and eukaryotic express) in pancreatic cancer. More importantly, based on MUC4/Y with the appropriate length of gene sequence, it is easy to construct the unique domain-lacking models of MUC4/Y (MUC4) for research. The present study focuses on investigation of the respective role of the unique NIDO, AMOP, and vWD domain or their synergistic effect on MUC4(MUC4/Y)-mediated functions and mechanisms by series of in vitro assays, sequence-based transcriptome analysis, validation of qRT-PCR & Western blot, and systematic comparative analysis. Our results demonstrate: 1) NIDO, AMOP, and vWD domain or their synergy play significant roles on MUC4/Y-mediated malignant function of pancreatic cancer, downstream of molecule mechanisms, particularly MUC4/Y-triggered malignancy-related positive feedback loops, respectively. 2) The synergistic roles of three unique domains on MUC4/Y-mediated functions and mechanisms are more prominent than the respective domain because the synergy of three domain plays the more remarkable effects on MUC4/Y-mediated signaling hub. Thus, to improve reversed effects of domain-lacking and break the synergism of domains will contribute to block MUC4/Y(MUC4) triggering various oncogenic signaling pathways.
MUC4粘蛋白是克服胰腺癌的一个重要潜在靶点。三个独特结构域(NIDO、AMOP和vWD)仅存在于MUC4中,其作用尚不清楚,在其他膜结合粘蛋白中未发现。我们之前的研究首次报道,其剪接变体MUC4/Y可作为胰腺癌中MUC4的模型(MUC4基因片段超过30KB,太大难以克隆和真核表达)。更重要的是,基于具有合适基因序列长度的MUC4/Y,很容易构建缺乏独特结构域的MUC4/Y(MUC4)模型用于研究。本研究通过一系列体外实验、基于序列的转录组分析、qRT-PCR和蛋白质免疫印迹验证以及系统的比较分析,重点研究独特的NIDO、AMOP和vWD结构域各自的作用或它们对MUC4(MUC4/Y)介导的功能和机制的协同效应。我们的结果表明:1)NIDO、AMOP和vWD结构域或它们的协同作用分别在MUC4/Y介导的胰腺癌恶性功能、分子机制下游,特别是MUC4/Y触发的恶性相关正反馈回路中发挥重要作用。2)三个独特结构域对MUC4/Y介导的功能和机制的协同作用比各自的结构域更突出,因为三个结构域的协同作用对MUC4/Y介导的信号枢纽有更显著的影响。因此,改善缺乏结构域的逆转效应并打破结构域的协同作用将有助于阻断MUC4/Y(MUC4)触发各种致癌信号通路。