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Feasibility of blood testing combined with PET-CT to screen for cancer and guide intervention 期刊论文
Science, 2020
作者:  Anne Marie Lennon;  Adam H. Buchanan;  Isaac Kinde;  Andrew Warren;  Ashley Honushefsky;  Ariella T. Cohain;  David H. Ledbetter;  Fred Sanfilippo;  Kathleen Sheridan;  Dillenia Rosica;  Christian S. Adonizio;  Hee Jung Hwang;  Kamel Lahouel;  Joshua D. Cohen;  Christopher Douville;  Aalpen A. Patel;  Leonardo N. Hagmann;  David D. Rolston;  Nirav Malani;  Shibin Zhou;  Chetan Bettegowda;  David L. Diehl;  Bobbi Urban;  Christopher D. Still;  Lisa Kann;  Julie I. Woods;  Zachary M. Salvati;  Joseph Vadakara;  Rosemary Leeming;  Prianka Bhattacharya;  Carroll Walter;  Alex Parker;  Christoph Lengauer;  Alison Klein;  Cristian Tomasetti;  Elliot K. Fishman;  Ralph H. Hruban;  Kenneth W. Kinzler;  Bert Vogelstein;  Nickolas Papadopoulos
收藏  |  浏览/下载:35/0  |  提交时间:2020/07/06
Mechanical regulation of glycolysis via cytoskeleton architecture 期刊论文
NATURE, 2020, 578 (7796) : 621-+
作者:  Faivre, Emily J.;  McDaniel, Keith F.;  Albert, Daniel H.;  Mantena, Srinivasa R.;  Plotnik, Joshua P.;  Wilcox, Denise;  Zhang, Lu;  Bui, Mai H.;  Sheppard, George S.;  Wang, Le;  Sehgal, Vasudha;  Lin, Xiaoyu;  Huang, Xiaoli;  Lu, Xin;  Uziel, Tamar;  Hessler, Paul;  Lam, Lloyd T.;  Bellin, Richard J.;  Mehta, Gaurav;  Fidanze, Steve;  Pratt, John K.;  Liu, Dachun;  Hasvold, Lisa A.;  Sun, Chaohong;  Panchal, Sanjay C.;  Nicolette, John J.;  Fossey, Stacey L.;  Park, Chang H.;  Longenecker, Kenton;  Bigelow, Lance;  Torrent, Maricel;  Rosenberg, Saul H.;  Kati, Warren M.;  Shen, Yu
收藏  |  浏览/下载:43/0  |  提交时间:2020/07/03

The mechanics of the cellular microenvironment continuously modulates cell functions such as growth, survival, apoptosis, differentiation and morphogenesis via cytoskeletal remodelling and actomyosin contractility(1-3). Although all of these processes consume energy(4,5), it is unknown whether and how cells adapt their metabolic activity to variable mechanical cues. Here we report that the transfer of human bronchial epithelial cells from stiff to soft substrates causes a downregulation of glycolysis via proteasomal degradation of the rate-limiting metabolic enzyme phosphofructokinase (PFK). PFK degradation is triggered by the disassembly of stress fibres, which releases the PFK-targeting E3 ubiquitin ligase tripartite motif (TRIM)-containing protein 21 (TRIM21). Transformed non-small-cell lung cancer cells, which maintain high glycolytic rates regardless of changing environmental mechanics, retain PFK expression by downregulating TRIM21, and by sequestering residual TRIM21 on a stress-fibre subset that is insensitive to substrate stiffness. Our data reveal a mechanism by which glycolysis responds to architectural features of the actomyosin cytoskeleton, thus coupling cell metabolism to the mechanical properties of the surrounding tissue. These processes enable normal cells to tune energy production in variable microenvironments, whereas the resistance of the cytoskeleton in response to mechanical cues enables the persistence of high glycolytic rates in cancer cells despite constant alterations of the tumour tissue.


Glycolysis in normal epithelial cells responds to microenvironmental mechanics via the modulation of actin bundles that sequester the phosphofructokinase-targeting ubiquitin ligase TRIM21, a process superseded by persistent actin bundles in cancer cells.


  
Spatial Modeling to Identify Sociodemographic Predictors of Hydraulic Fracturing Wastewater Injection Wells in Ohio Census Block Groups 期刊论文
ENVIRONMENTAL HEALTH PERSPECTIVES, 2018, 126 (6)
作者:  Silva, Genevieve S.;  Warren, Joshua L.;  Deziel, Nicole C.
收藏  |  浏览/下载:5/0  |  提交时间:2019/04/09