Matthew Meyerson
Harvard University
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Featured researches published by Matthew Meyerson.
Nature Genetics | 1998
Kathryn Ann Kolquist; Leif W. Ellisen; Chistopher M. Counter; Matthew Meyerson; Lee K. Tan; Robert A. Weinberg; Daniel A. Haber; William L. Gerald
Activation of telomerase, the enzyme that synthesizes the telomere ends of linear chromosomes, has been implicated in human cell immortalization and cancer cell pathogenesis. Enzyme activity is undetectable in most normal cells and tissues, but present in immortal cells and cancer tissues. While expression of TERC, the RNA component of telomerase, is widespread, the restricted expression pattern of TERT, the telomerase catalytic subunit gene, is correlated with telomerase activity, and its ectopic expression in telomerase-negative cells is sufficient to reconstitute telomerase activity and extend cellular lifespan. We have used in situ hybridization to study TERT expression at the single-cell level in normal tissues and in various stages of tumour progression. In normal tissues, including some that are known to be telomerase-negative, TERT mRNA was present in specific subsets of cells thought to have long-term proliferative capacity. This included mitotically inactive breast lobular epithelium in addition to some actively regenerating cells such as the stratum basale of the skin. TERT expression appeared early during tumorigenesis in vivo, beginning with early pre-invasive changes in human breast and colon tissues and increasing gradually during progression, both in the amount of TERT mRNA present within individual cells and in the number of expressing cells within a neoplastic lesion. The physiological expression of TERT within normal epithelial cells that retain proliferative potential and its presence at the earliest stages of tumorigenesis have implications for the regulation of telomerase expression and for the identification of cells that may be targets for malignant transformation.
Cancer Cell | 2016
Lili Wang; Angela N. Brooks; Jean Fan; Youzhong Wan; Rutendo Gambe; Shuqiang Li; Sarah Hergert; Shanye Yin; Samuel S. Freeman; Joshua Z. Levin; Lin Fan; Michael Seiler; Silvia Buonamici; Peter G. Smith; Kevin F. Chau; Carrie Cibulskis; Wandi Zhang; Laura Z. Rassenti; Emanuela M. Ghia; Thomas J. Kipps; Stacey M. Fernandes; Donald B. Bloch; Dylan Kotliar; Dan A. Landau; Sachet A. Shukla; Robin Reed; David S. DeLuca; Jennifer R. Brown; Donna Neuberg; Gad Getz
Mutations in SF3B1, which encodes a spliceosome component, are associated with poor outcome in chronic lymphocytic leukemia (CLL), but how these contribute to CLL progression remains poorly understood. We undertook a transcriptomic characterization of primary human CLL cells to identify transcripts and pathways affected by SF3B1 mutation. Splicing alterations, identified in the analysis of bulk cells, were confirmed in single SF3B1-mutated CLL cells and also found in cell lines ectopically expressing mutant SF3B1. SF3B1 mutation was found to dysregulate multiple cellular functions including DNA damage response, telomere maintenance, and Notch signaling (mediated through KLF8 upregulation, increased TERC and TERT expression, or altered splicing of DVL2 transcript, respectively). SF3B1 mutation leads to diverse changes in CLL-related pathways.
Archive | 1998
Christopher M. Counter; Matthew Meyerson; Robert A. Weinberg
Archive | 2012
Matthew Meyerson; Shantanu Banerji; Gad Getz; Kristian Cibulskis; Michael S. Lawrence; Alfredo Hidalgo Miranda; Claudia Rangel Escareno; Alex Toker; Kristin K. Brown
Archive | 2016
ダフネ ウィニフレッド ベル; Daphne W. Bell; ダニエル エー. ハーバー; Daniel A. Haber; パシ アンテロ ジャンヌ; Pasi Antero Janne; ブルース イー. ジョンソン; Bruce E. Johnson; トマス ジェイ. リンチ; Thomas J. Lynch; マシュー マイヤソン; Matthew Meyerson; ジュアン ギエルモ パエス; Juan Guillermo Paez; ウィリアム アール. セラーズ; William R. Sellers; ジェフリー イー. セトルマン; Jeffrey Settleman; ラファエラ ソルデッラ; Raffaella Sordella
International Journal of Radiation Oncology Biology Physics | 2015
M. Abazeed; Drew J. Adams; Peter S. Hammerman; Pablo Tamayo; B. Yard; Matthew Meyerson; Stuart L. Schreiber
International Journal of Radiation Oncology Biology Physics | 2015
Mai Anh Huynh; Cecile L. Maire; M. Abazeed; Drew J. Adams; Kristine Pelton; Nancy E. Pinnell; Shakti Ramkissoon; Houari Korideck; P. Van Hummelen; Aaron R. Thorner; Patrick Y. Wen; Azra H. Ligon; S. Schreiber; Matthew Meyerson; Keith L. Ligon; Brian M. Alexander
Archive | 2012
N Wagle; Michael F. Berger; Matthew J. Davis; Brendan Blumenstiel; Matthew DeFelice; Matthew A. Ducar; Paul Van Hummelen; Laura E. MacConaill; William C. Hahn; Matthew Meyerson; Stacey Gabriel; Levi Garraway
Archive | 2011
Hiu Wing Cheung; Jinyan Du; Jesse S. Boehm; Frank He; Barbara A. Weir; Xiaoxing Wang; Mohit Butaney; Lecia V. Sequist; Biao Luo; Jeffrey Engelman; David E. Root; Matthew Meyerson; Todd R. Golub; Pasi Antero Janne; William C. Hahn
Archive | 2011
Hiu Wing Cheung; Jinyan Du; Jesse S. Boehm; Frank He; Barbara A. Weir; Xiaoxing Wang; Mohit Butaney; Lecia V. Sequist; Biao Luo; Jeffrey Engelman; David E. Root; Matthew Meyerson; Todd R. Golub; Pasi Antero Janne; William C. Hahn