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与PTBP1相关的微小RNA-1和-133b抑制结直肠肿瘤中的瓦伯格效应。

PTBP1-associated microRNA-1 and -133b suppress the Warburg effect in colorectal tumors.

作者信息

Taniguchi Kohei, Sakai Miku, Sugito Nobuhiko, Kumazaki Minami, Shinohara Haruka, Yamada Nami, Nakayama Tatsushi, Ueda Hiroshi, Nakagawa Yoshihito, Ito Yuko, Futamura Manabu, Uno Bunji, Otsuki Yoshinori, Yoshida Kazuhiro, Uchiyama Kazuhisa, Akao Yukihiro

机构信息

United Graduate School of Drug Discovery and Medical Information Sciences, Gifu University, Gifu 501-1193, Japan.

Department of General and Gastroenterological Surgery, Osaka Medical College, Takatsuki, Osaka 569-8686, Japan.

出版信息

Oncotarget. 2016 Apr 5;7(14):18940-52. doi: 10.18632/oncotarget.8005.

Abstract

It is known that pyruvate kinase in muscle (PKM), which is a rate-limiting glycolytic enzyme, has essential roles in the Warburg effect and that expression of cancer-dominant PKM2 is increased by polypyrimidine tract-binding protein 1 (PTBP1), which is a splicer of the PKM gene. In other words, PKM2 acts as a promoter of the Warburg effect. Previously, we demonstrated that the Warburg effect was partially established by down-regulation of several microRNAs (miRs) that bind to PTBP1 and that ectopic expression of these miRs suppressed the Warburg effect. In this study, we investigated the functions of miR-1 and -133b, which are well known as muscle-specific miRs, from the viewpoint of the Warburg effect in colorectal tumors. The expression levels of miR-1 and -133b were relatively high in colon tissue except muscle and very frequently down-regulated in 75 clinical colorectal tumors samples, even in adenomas, compared with those of the adjacent normal tissue samples. The ectopic expression of these miRs induced growth suppression and autophagic cell death through the switching of PKM isoform expression from PKM2 to PKM1 by silencing PTBP1 expression both in vitro and in vivo. Also, we showed that the resultant increase in the intracellular level of reactive oxygen species (ROS) was involved in this mechanism. Furthermore, PTBP1 was highly expressed in most of the 30 clinical colorectal tumor samples examined, even in adenomas. Our results suggested that PTBP1 and PTBP1-associated miR-1 and -133b are crucial molecules for the maintenance of the Warburg effect in colorectal tumors.

摘要

众所周知,肌肉中的丙酮酸激酶(PKM)作为糖酵解的限速酶,在瓦伯格效应中起着至关重要的作用,并且癌症主导型PKM2的表达会因多嘧啶序列结合蛋白1(PTBP1)而增加,PTBP1是PKM基因的剪接因子。换句话说,PKM2充当瓦伯格效应的促进因子。此前,我们证明瓦伯格效应部分是通过下调几种与PTBP1结合的微小RNA(miR)而建立的,并且这些miR的异位表达会抑制瓦伯格效应。在本研究中,我们从结直肠肿瘤的瓦伯格效应角度研究了众所周知的肌肉特异性miR-1和-133b的功能。与相邻正常组织样本相比,miR-1和-133b在除肌肉外的结肠组织中表达水平相对较高,并且在75个临床结直肠肿瘤样本中,甚至在腺瘤中,其表达水平经常下调。这些miR的异位表达通过在体外和体内沉默PTBP1的表达,促使PKM异构体表达从PKM2转换为PKM1,从而诱导生长抑制和自噬性细胞死亡。此外,我们表明细胞内活性氧(ROS)水平的升高参与了这一机制。此外,在检测的30个临床结直肠肿瘤样本中,即使在腺瘤中,大多数样本中PTBP1也高表达。我们的结果表明,PTBP1以及与PTBP1相关的miR-1和-133b是维持结直肠肿瘤中瓦伯格效应的关键分子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f9b/4951342/1d7feba38beb/oncotarget-07-18940-g001.jpg

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