Cyclin D1 splice variants: polymorphism, risk, and isoform-specific regulation in prostate cancer

细胞周期蛋白 D1 剪接变体:前列腺癌中的多态性、风险和异构体特异性调控

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作者:Clay E S Comstock, Michael A Augello, Ruth Pe Benito, Jason Karch, Thai H Tran, Fransiscus E Utama, Elizabeth A Tindall, Ying Wang, Craig J Burd, Eric M Groh, Hoa N Hoang, Graham G Giles, Gianluca Severi, Vanessa M Hayes, Brian E Henderson, Loic Le Marchand, Laurence N Kolonel, Christopher A Haiman,

Conclusions

These studies reveal that cyclin D1b is specifically elevated in prostate tumorigenesis. Cyclin D1b expression patterns are distinct from that observed with cyclin D1a. The A870 allele predisposes for transcript-b production in a context-specific manner. Although A870 does not independently predict cancer risk, tumor cells can bypass the influence of the polymorphism. These findings have major implications for the analyses of D-cyclin function in the prostate and provide the foundation for future studies directed at identifying potential modifiers of the G/A870 polymorphism.

Purpose

Alternative CCND1 splicing

Results

Cyclin D1b is induced in tumors, and a significant subset expressed this isoform in the absence of detectable cyclin D1a. Accordingly, the isoforms showed noncorrelated expression patterns, and hormone status did not alter splicing. Whereas G/A870 was not independently predictive of cancer risk, A870 predisposed for transcript-b production in cells and in normal prostate. The influence of A870 on overall transcript-b levels was relieved in tumors, indicating that aberrations in tumorigenesis likely alter the influence of the polymorphism. Conclusions: These studies reveal that cyclin D1b is specifically elevated in prostate tumorigenesis. Cyclin D1b expression patterns are distinct from that observed with cyclin D1a. The A870 allele predisposes for transcript-b production in a context-specific manner. Although A870 does not independently predict cancer risk, tumor cells can bypass the influence of the polymorphism. These findings have major implications for the analyses of D-cyclin function in the prostate and provide the foundation for future studies directed at identifying potential modifiers of the G/A870 polymorphism.

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