Wang Tao, Wang Yi, Wu Meng-Chao, Guan Xin-Yuan, Yin Zheng-Feng
Department of Molecular Oncology, Eastern Hepatobiliary Surgery Hospital, Shanghai 200438, China.
World J Gastroenterol. 2004 Feb 1;10(3):356-60. doi: 10.3748/wjg.v10.i3.356.
To investigate the mechanism and significance of NF-kappaB activation regulated by hepatitis B virus X protein (HBx) in hepatitis B virus (HBV)-associated hepatocellular carcinoma (HCC).
The expression levels of HBx, p65, IkappaB-alpha and ubiquitin were detected by immunohistochemistry in HCC tissue microarrays (TMA) respectively, and IkappaB-alpha was detected by Western blot in HCC and corresponding liver tissues.
The percentage of informative TMA samples was 98.8% in 186 cases with a total of 367 samples. Compared with corresponding liver tissues (60.0%), the HBx expression was obviously decreased in HBV-associated HCC (47.9%, u=2.24, P<0.05). On the contrary, the expressions of p65 (20.6% vs 45.3%, u=4.85, P<0.01) and ubiquitin (8.9% vs 59.0%, u=9.68, P<0.01) were notably elevated in HCC. In addition, IkappaB-alpha had a tendency to go up. Importantly, positive relativity was observed between HBx and p65 (chi2=10.26, P<0.01), p65 and IkappaB-alpha (chi (2)=16.86, P<0.01), IkappaB-alpha and ubiquitin (chi2=8.90, P<0.01) in HCC, respectively.
Both active and non-active forms of NF-kappaB are increased in HBV-associated HCC. Variant HBx is the major cause of the enhancement of NF-kappaB activity. The activation always proceeds in nucleus and the proteasome complexes play an important role in the activation.
探讨乙型肝炎病毒X蛋白(HBx)调控核因子κB(NF-κB)激活在乙型肝炎病毒(HBV)相关肝细胞癌(HCC)中的机制及意义。
分别采用免疫组织化学法检测HCC组织芯片(TMA)中HBx、p65、IκB-α和泛素的表达水平,采用蛋白质印迹法检测HCC及相应肝组织中IκB-α的表达。
186例共367个样本的TMA样本有效率为98.8%。与相应肝组织(60.0%)相比,HBx在HBV相关HCC中的表达明显降低(47.9%,u=2.24,P<0.05)。相反,HCC中p65(20.6%对45.3%,u=4.85,P<0.01)和泛素(8.9%对59.0%,u=9.68,P<0.01)的表达显著升高。此外,IκB-α有升高趋势。重要的是,在HCC中分别观察到HBx与p65(χ2=10.26,P<0.01)、p65与IκB-α(χ2=16.86,P<0.01)、IκB-α与泛素(χ2=8.90,P<0.01)呈正相关。
HBV相关HCC中NF-κB的活性形式和非活性形式均增加。变异的HBx是NF-κB活性增强的主要原因。激活过程总是在细胞核中进行,蛋白酶体复合物在激活过程中起重要作用。