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New candidate tumor-suppressor gene KLF6 and its splice variant KLF6 SV2 counterbalancing expression in primary hepatocarcinoma

机译:新的候选肿瘤抑制基因KLF6及其剪接变体KLF6 SV2在原发性肝癌中的平衡表达

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Background/Aims: This study aimed to detect the expression of newly discovered zinc finger transcriptional factor KLF6 and its splice variant KLF6 SV2 in primary hepatocarcinoma (PHC) tissues and hepatoma cell strains, and to evaluate their clinicopathologic relationship with PHC. Methodology: Wild-type KLF6 and KLF6 SV2 mRNA expression was determined by RT-PCR in 27 cases of PHC tissues and cell strains of HepG2, SMMC7721 and LO2. Western blotting and immunohistochemical staining were adopted to detect KLF6 protein expression. Positive area ratio of wild-type KLF6 protein expression and its relationship with clinicopathological parameters of PHC was analyzed. Results: Wild-type KLF6 expression in PHC tissues was lower than that in paracancerous tissues. In contrast, KLF6 SV2 mRNA expression was higher in PHC tissues and hepatoma cell strains (p<0.05). Positive area ratio of wild-type KLF6 protein expression was positively correlated with cellular differentiation degree of PHC (p<0.01), but negatively correlated not only with liver cirrhosis, tumor size and extrahepatic metastases (p<0.01), but also with portal vein thrombus and the number of lymph nodes with metastasis (p<0.05). Conclusions: Wild-type KLF6 deletion and inactivation was involved in the growth, cell differentiation and other physiological processes of PHC. The upregulation of KLF6 splice variant might counterbalance the wildtype KLF6 and contribute to the occurrence and development of PHC.
机译:背景/目的:本研究旨在检测新发现的锌指转录因子KLF6及其剪接变体KLF6 SV2在原发性肝癌(PHC)组织和肝癌细胞株中的表达,并评估其与PHC的临床病理关系。方法:采用RT-PCR技术检测27例HepG2,SMMC7721和LO2的PHC组织和细胞株中野生型KLF6和KLF6 SV2 mRNA的表达。采用Western blotting和免疫组化染色检测KLF6蛋白表达。分析了野生型KLF6蛋白表达的阳性面积比及其与PHC临床病理参数的关系。结果:PHC组织中野生型KLF6表达低于癌旁组织。相反,PHC组织和肝癌细胞株中KLF6 SV2 mRNA表达较高(p <0.05)。野生型KLF6蛋白表达的正面积比与PHC的细胞分化程度呈正相关(p <0.01),但不仅与肝硬化,肿瘤大小和肝外转移呈负相关(p <0.01),而且还与门静脉负相关血栓和有转移的淋巴结数目(p <0.05)。结论:野生型KLF6的缺失和失活与PHC的生长,细胞分化及其他生理过程有关。 KLF6剪接变体的上调可能抵消野生型KLF6,并有助于PHC的发生和发展。

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