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Recurrent and functional regulatory mutations in breast cancer

Nature. 2017-07; 
Esther Rheinbay, Prasanna Parasuraman, Jonna Grimsby, Grace tiao, Jesse m. Engreitz, Jaegil Kim, michael S. Lawrence, Amaro taylor-Weiner, Sergio Rodriguez-cuevas, mara Rosenberg, Julian hess, chip Stewart, Yosef E. maruvka, Petar Stojanov, maria L. cortes, Sara Seepo, carrie cibulskis, Adam tracy, trevor J. Pugh, Jesse Lee, Zongli Zheng, Leif W. Ellisen, A. John iafrate, Jesse S. Boehm, Stacey B. Gabriel, matthew meyerson, todd R. Golub, Jose Baselga, Alfredo hidalgo-miranda, toshi Shioda, Andre Bernards, Eric S. Lander & Gad Getz
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PCR Cloning and Subcloning Briefly, DNA sequence blocks representing the various WT and mutant promoter sequences, starting with a unique PstI site, and including the 5′ -most 174 bp of the luciferase open reading frame (ending in a unique BstB1 site) were obtained from GenScript and sub-cloned into the PstI- and BstBIdigested 7-TFP vector. Get A Quote
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摘要

Genomic analysis of tumours has led to the identification of hundreds of cancer genes on the basis of the presence of mutations in protein-coding regions. By contrast, much less is known about cancer-causing mutations in non-coding regions. Here we perform deep sequencing in 360 primary breast cancers and develop computational methods to identify significantly mutated promoters. Clear signals are found in the promoters of three genes. FOXA1, a known driver of hormone-receptor positive breast cancer, harbours a mutational hotspot in its promoter leading to overexpression through increased E2F binding. RMRP and NEAT1, two non-coding RNA genes, carry mutations that affect protein binding to their promote... More

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