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Articles by Arun Seth in JoVE

 JoVE Clinical and Translational Medicine

MicroRNA प्रोस्टेट ट्यूमर में मात्रात्मक वास्तविक समय पीसीआर (qPCR) द्वारा जांच


JoVE 3874 5/16/2012

1Department of Laboratory Medicine & Pathobiology, University of Toronto, 2Division of Urology, Sunnybrook Health Sciences Centre, Toronto, Canada, 3Department of Anatomic Pathology, Sunnybrook Health Sciences Centre, Toronto, Canada, 4Biological Sciences, Sunnybrook Research Institute

मात्रात्मक वास्तविक समय पोलीमरेज़ चेन रिएक्शन (qPCR) एक तेजी से और संवेदनशील ट्यूमर के नमूनों में विभिन्न microRNA की अभिव्यक्ति के स्तर (miRNA) अणुओं की जांच के विधि है. अलग miRNA अणुओं के सैकड़ों की इस विधि अभिव्यक्ति का उपयोग करना, प्रवर्धित किया जा सकता है मात्रा, और एक ही सीडीएनए टेम्पलेट से विश्लेषण किया है.

Other articles by Arun Seth on PubMed

Src Promotes Estrogen-dependent Estrogen Receptor Alpha Proteolysis in Human Breast Cancer

Estrogen drives both transcriptional activation and proteolysis of estrogen receptor alpha (ER alpha; encoded by ESR1). Here we observed variable and overlapping ESR1 mRNA levels in 200 ER alpha-negative and 50 ER alpha-positive primary breast cancers examined, which suggests important posttranscriptional ER alpha regulation. Our results indicate that Src cooperates with estrogen to activate ER alpha proteolysis. Inducible Src stimulated ligand-activated ER alpha transcriptional activity and reduced ER alpha t(1/2). Src and ER alpha levels were inversely correlated in primary breast cancers. ER alpha-negative primary breast cancers and cell lines showed increased Src levels and/or activity compared with ER alpha-positive cancers and cells. ER alpha t(1/2) was reduced in ER alpha-negative cell lines. In both ER alpha-positive and -negative cell lines, both proteasome and Src inhibitors increased ER alpha levels. Src inhibition impaired ligand-activated ER alpha ubiquitylation and increased ER alpha levels. Src siRNA impaired ligand-activated ER alpha loss in BT-20 cells. Pretreatment with Src increased ER alpha ubiquitylation and degradation in vitro. These findings provide what we believe to be a novel link between Src activation and ER alpha proteolysis and support a model whereby crosstalk between liganded ER alpha and Src drives ER alpha transcriptional activity and targets ER alpha for ubiquitin-dependent proteolysis. Oncogenic Src activation may promote not only proliferation, but also estrogen-activated ER alpha loss in a subset of ER alpha-negative breast cancers, altering prognosis and response to therapy.

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