湖北省宫颈癌高发区hpv16e7新型变异株的鉴定

Eksperimental'naia onkologiia Pub Date : 2004-03-01
Hui Li, Min Zhao, Xiaoping Qiu, Xiaohua Ding, Yun Tan, Xinxing Wu
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引用次数: 0

摘要

目的:探讨湖北省高发地区宫颈癌活检标本中分离的hpv16e7的变异及其生物学特性。方法:对10例本地宫颈癌活检患者的HVP16 E7基因进行扩增、测序,并与E7原型基因进行比较。将该变异基因克隆到不同载体中,采用Western blot、免疫荧光和遗传免疫等方法研究其蛋白的抗原性、表达和免疫原性。结果:10份样本中有7份具有相同的突变,导致E7序列密码子43处无义突变。截断的E7蛋白可被标准E7单克隆抗体Western blot识别,并在NIH3T3细胞中表达。用表达E7变异基因的质粒DNA肌内免疫小鼠,在接种后第2、3、5、6周可在小鼠血清中检测到E7特异性抗体。然而,与原型E7蛋白相比,MTT比色法未检测到E7蛋白体外刺激后的特异性淋巴细胞增殖。结论:hpv16e7基因在中国可能存在变异,变异蛋白可以表达并诱导宿主体液免疫应答,但不能引起特异性的细胞免疫应答。这些数据可能为今后湖北省HPV16疫苗的研制提供关键信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of a new type HPV16 E7 variant isolated from cervical cancer highest incidence area in Hubei Province of China.

Aim: To investigate the variation and biological properties of HPV16 E7 isolated from cervical cancer biopsy samples from highest incidence area in HuBei province of China.

Methods: HVP16 E7 sequences isolated from the cervical cancer biopsies of 10 local patients were amplified, sequenced and compared with prototype E7 gene. Then the variant gene was cloned into different vectors to study the antigenicity, expression and immunogenicity of its protein by Western blot, immunofluorescence and genetic immunization in vitro or in vivo.

Results: The results showed that 7 of 10 samples had the same mutations which led to a nonsense mutation at codon 43 of E7 sequence. The truncated E7 protein could be recognized by standard E7 monoclonal antibody in Western blot and expressed in NIH3T3 cells. In the blood sera of mice immunized intramuscularly by the plasmid DNA expressing the variant E7 gene specific E7 antibodies could be detected at week 2, 3, 5 and 6 after inoculation. However, no specific lymphoproliferation after E7 protein stimulation in vitro was detected by MTT colorimetric assay in comparison to the prototype E7 protein.

Conclusion: HPV16 E7 gene may show variation in China and the variant protein could be expressed and induce host humoral immune response, but could not elicit special cellular-immune response against it. These data might hold the key for future development of HPV16 vaccine in HuBei province of China.

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