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人骨髓瘤衍生细胞系中p16基因因高甲基化而发生转录沉默。

Transcriptional silencing of the p16 gene in human myeloma-derived cell lines by hypermethylation.

作者信息

Wong I H, Ng M H, Lee J C, Lo K W, Chung Y F, Huang D P

机构信息

Department of Anatomical and Cellular Pathology, Prince of Wales Hospital, The Chinese University of Hong Kong, Shatin, NT, SAR.

出版信息

Br J Haematol. 1998 Oct;103(1):168-75.

PMID:9792305
Abstract

Recently, p16 and p15 have been identified as commonly inactivated tumour suppressor genes in haematological malignancies. We previously reported that these genes were frequently hypermethylated in multiple myeloma (MM). To investigate how p16 and p15 inactivation are associated with hypermethylation, methylation status and transcription of these genes in six MM-derived cell lines were studied by Southern blot analysis and RT-PCR. Aberrant methylation of p16 was found in ARH-77, HS-Sultan, IM-9, RPMI-8226, U266-B1 and NCI-H929 MM cell lines. However, loss of p16 transcription was demonstrated only in HS-Sultan, RPMI-8226, U266-B1 and NCI-H929 with extensive methylation at the 5' upstream region of p16. Conversely, only HS-Sultan showed extensive methylation at the 5' upstream region of p15, which was associated with p15 transcriptional block. These results suggest that extensive methylation within a critical domain may be crucial in silencing p16 or p15 transcription. To demonstrate the reversibility of methylation and its relationship with transcription, HS-Sultan, RPMI-8226 and NCI-H929 were demethylated with 5-aza-2'-deoxycytidine. Restoration of gene transcription was observed and correlated with partial demethylation of the genes. The present data show that the p16 and p15 genes are silenced in MM by hypermethylation, which may play an important role in MM pathogenesis.

摘要

最近,p16和p15已被确定为血液系统恶性肿瘤中常见的失活肿瘤抑制基因。我们之前报道过,这些基因在多发性骨髓瘤(MM)中经常发生高甲基化。为了研究p16和p15失活与高甲基化之间的关系,通过Southern印迹分析和逆转录-聚合酶链反应(RT-PCR)研究了6种MM来源细胞系中这些基因的甲基化状态和转录情况。在ARH-77、HS-Sultan、IM-9、RPMI-8226、U266-B1和NCI-H929 MM细胞系中发现了p16的异常甲基化。然而,仅在HS-Sultan、RPMI-8226、U266-B1和NCI-H929中证实p16转录缺失,这些细胞系中p16的5'上游区域存在广泛甲基化。相反,只有HS-Sultan在p15的5'上游区域显示广泛甲基化,这与p15转录受阻相关。这些结果表明,关键区域内的广泛甲基化可能对沉默p16或p15转录至关重要。为了证明甲基化的可逆性及其与转录的关系,用5-氮杂-2'-脱氧胞苷对HS-Sultan、RPMI-8226和NCI-H929进行去甲基化处理。观察到基因转录恢复,且与基因的部分去甲基化相关。目前的数据表明,p16和p15基因在MM中因高甲基化而沉默,这可能在MM发病机制中起重要作用。

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