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用于癌症治疗的编码c-myc抑制因子FBP相互作用阻遏物的非传染性仙台病毒载体。

Non-transmissible Sendai virus vector encoding c-myc suppressor FBP-interacting repressor for cancer therapy.

作者信息

Matsushita Kazuyuki, Shimada Hideaki, Ueda Yasuji, Inoue Makoto, Hasegawa Mamoru, Tomonaga Takeshi, Matsubara Hisahiro, Nomura Fumio

机构信息

Kazuyuki Matsushita, Fumio Nomura, Department of Molecular Diagnosis, Graduate School of Medicine, Chiba University, Chiba 260-8670, Japan.

出版信息

World J Gastroenterol. 2014 Apr 21;20(15):4316-28. doi: 10.3748/wjg.v20.i15.4316.

Abstract

AIM

To investigate a novel therapeutic strategy to target and suppress c-myc in human cancers using far up stream element (FUSE)-binding protein-interacting repressor (FIR).

METHODS

Endogenous c-Myc suppression and apoptosis induction by a transient FIR-expressing vector was examined in vivo via a HA-tagged FIR (HA-FIR) expression vector. A fusion gene-deficient, non-transmissible, Sendai virus (SeV) vector encoding FIR cDNA, SeV/dF/FIR, was prepared. SeV/dF/FIR was examined for its gene transduction efficiency, viral dose dependency of antitumor effect and apoptosis induction in HeLa (cervical squamous cell carcinoma) cells and SW480 (colon adenocarcinoma) cells. Antitumor efficacy in a mouse xenograft model was also examined. The molecular mechanism of the anti-tumor effect and c-Myc suppression by SeV/dF/FIR was examined using Spliceostatin A (SSA), a SAP155 inhibitor, or SAP155 siRNA which induce c-Myc by increasing FIR∆exon2 in HeLa cells.

RESULTS

FIR was found to repress c-myc transcription and in turn the overexpression of FIR drove apoptosis through c-myc suppression. Thus, FIR expressing vectors are potentially applicable for cancer therapy. FIR is alternatively spliced by SAP155 in cancer cells lacking the transcriptional repression domain within exon 2 (FIR∆exon2), counteracting FIR for c-Myc protein expression. Furthermore, FIR forms a complex with SAP155 and inhibits mutual well-established functions. Thus, both the valuable effects and side effects of exogenous FIR stimuli should be tested for future clinical application. SeV/dF/FIR, a cytoplasmic RNA virus, was successfully prepared and showed highly efficient gene transduction in in vivo experiments. Furthermore, in nude mouse tumor xenograft models, SeV/dF/FIR displayed high antitumor efficiency against human cancer cells. SeV/dF/FIR suppressed SSA-activated c-Myc. SAP155 siRNA, potentially produces FIR∆exon2, and led to c-Myc overexpression with phosphorylation at Ser62. HA-FIR suppressed endogenous c-Myc expression and induced apoptosis in HeLa and SW480 cells. A c-myc transcriptional suppressor FIR expressing SeV/dF/FIR showed high gene transduction efficiency with significant antitumor effects and apoptosis induction in HeLa and SW480 cells.

CONCLUSION

SeV/dF/FIR showed strong tumor growth suppression with no significant side effects in an animal xenograft model, thus SeV/dF/FIR is potentially applicable for future clinical cancer treatment.

摘要

目的

研究一种利用远上游元件(FUSE)结合蛋白相互作用阻遏物(FIR)靶向并抑制人类癌症中c-myc的新型治疗策略。

方法

通过带有HA标签的FIR(HA-FIR)表达载体在体内检测瞬时表达FIR的载体对内源c-Myc的抑制作用和凋亡诱导作用。制备了一种编码FIR cDNA的融合基因缺陷型、非传染性仙台病毒(SeV)载体SeV/dF/FIR。检测了SeV/dF/FIR在HeLa(宫颈鳞状细胞癌)细胞和SW480(结肠腺癌)细胞中的基因转导效率、抗肿瘤作用的病毒剂量依赖性及凋亡诱导作用。还检测了其在小鼠异种移植模型中的抗肿瘤疗效。使用剪接抑制素A(SSA)(一种SAP155抑制剂)或能通过增加HeLa细胞中FIR∆exon2诱导c-Myc的SAP155 siRNA,研究SeV/dF/FIR抗肿瘤作用及c-Myc抑制的分子机制。

结果

发现FIR可抑制c-myc转录,进而通过抑制c-myc驱动凋亡。因此,表达FIR的载体具有癌症治疗的潜在应用价值。在2号外显子(FIR∆exon2)内缺乏转录抑制结构域的癌细胞中,FIR可被SAP155选择性剪接,抵消FIR对c-Myc蛋白表达的作用。此外,FIR与SAP155形成复合物并抑制彼此已确立的功能。因此,对于未来的临床应用,应测试外源性FIR刺激的有益效果和副作用。成功制备了细胞质RNA病毒SeV/dF/FIR,并在体内实验中显示出高效的基因转导。此外,在裸鼠肿瘤异种移植模型中,SeV/dF/FIR对人类癌细胞显示出高抗肿瘤效率。SeV/dF/FIR抑制了SSA激活的c-Myc。SAP155 siRNA可能产生FIR∆exon2,并导致c-Myc过表达且在Ser62处磷酸化。HA-FIR抑制HeLa和SW480细胞中的内源性c-Myc表达并诱导凋亡。表达c-myc转录抑制因子FIR的SeV/dF/FIR在HeLa和SW480细胞中显示出高基因转导效率,具有显著的抗肿瘤作用和凋亡诱导作用。

结论

在动物异种移植模型中,SeV/dF/FIR显示出强大的肿瘤生长抑制作用且无明显副作用,因此SeV/dF/FIR具有未来临床癌症治疗的潜在应用价值。

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