Kết quả tìm kiếm - David Barneda
- Đang hiển thị 1 - 14 kết quả của 14
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1
Lipid droplet growth: regulation of a dynamic organelle Bằng David Barneda, Mark Christian
Được phát hành 2017Revisão -
2
Hallmarks of cancer stem cell metabolism Bằng Patricia Sancho, David Barneda, Christopher Heeschen
Được phát hành 2016Revisão -
3
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4
How is the acyl chain composition of phosphoinositides created and does it matter? Bằng David Barneda, Sabina Cosulich, Len Stephens, Phillip T. Hawkins
Được phát hành 2019Revisão -
5
Lipid Droplet Biogenesis Induced by Stress Involves Triacylglycerol Synthesis That Depends on Group VIA Phospholipase A2 Bằng Albert Gubern, Miquel Barceló-Torns, Javier Casas, David Barneda, Roser Masgrau, Fernando Picatoste, Jesús Balsinde, Marı́a A. Balboa, Enrique Claro
Được phát hành 2009Artigo -
6
Group IVA Phospholipase A2 Is Necessary for the Biogenesis of Lipid Droplets Bằng Albert Gubern, Javier Casas, Miquel Barceló-Torns, David Barneda, Xavier de la Rosa, Roser Masgrau, Fernando Picatoste, Jesús Balsinde, Marı́a A. Balboa, Enrique Claro
Được phát hành 2008Artigo -
7
JNK and Ceramide Kinase Govern the Biogenesis of Lipid Droplets through Activation of Group IVA Phospholipase A2 Bằng Albert Gubern, Miquel Barceló-Torns, David Barneda, José M. López, Roser Masgrau, Fernando Picatoste, Charles E. Chalfant, Jesús Balsinde, Marı́a A. Balboa, Enrique Claro
Được phát hành 2009Artigo -
8
Fatty acid oxidation is critical for the tumorigenic potential and chemoresistance of pancreatic cancer stem cells Bằng Marta Mascaraque, Sarah Courtois, Alba Royo-García, David Barneda, Andrei M. Stoian, Isabel Villaoslada, Pilar Espiau-Romera, Ansooya A. Bokil, Andrés Cano-Galiano, Petra Jagušt, Christopher Heeschen, Patricia Sancho
Được phát hành 2024Artigo -
9
MYC/PGC-1α Balance Determines the Metabolic Phenotype and Plasticity of Pancreatic Cancer Stem Cells Bằng Patricia Sancho, Emma Burgos‐Ramos, Alejandra Tavera-Tapia, Tony Bou Kheir, Petra Jagušt, Matthieu Schoenhals, David Barneda, Katherine Sellers, Ramón Campos‐Olivas, Osvaldo Graña‐Castro, Catarina R. Viera, Mariia Yuneva, Bruno Sáinz, Christopher Heeschen
Được phát hành 2015Artigo -
10
The brown adipocyte protein CIDEA promotes lipid droplet fusion via a phosphatidic acid-binding amphipathic helix Bằng David Barneda, Joan Planas-Iglesias, María L. Gaspar, Dariush Mohammadyani, Sunil Prasannan, Dirk Dormann, Gil‐Soo Han, Stephen A. Jesch, George Carman, Valerian E. Kagan, Malcolm G. Parker, Nicholas T. Ktistakis, Judith Klein‐Seetharaman, Ann M. Dixon, Susan A. Henry, Mark Christian
Được phát hành 2015Artigo -
11
PLEKHS1 drives PI3Ks and remodels pathway homeostasis in PTEN-null prostate Bằng Tamara Chessa, Piotr Jung, Sabine Suire, Arqum Anwar, Karen E. Anderson, David Barneda, Anna Kielkowska, Barzan A. Sadiq, Sérgio Luís Felisbino, David Oxley, Dominik Spensberger, Anne Segonds-Pichon, Michael Wilson, Simon Walker, Hanneke Okkenhaug, Sabina Cosulich, Phillip T. Hawkins, Len Stephens
Được phát hành 2023Pré-impressão -
12
PLEKHS1 drives PI3Ks and remodels pathway homeostasis in PTEN-null prostate Bằng Tamara Chessa, Piotr Jung, Arqum Anwar, Sabine Suire, Karen E. Anderson, David Barneda, Anna Kielkowska, Barzan A. Sadiq, Ieng Wai Lai, Sérgio Luís Felisbino, Daniel J. Turnham, Helen Pearson, Wayne A. Phillips, Junko Sasaki, Takehiko Sasaki, David Oxley, Dominik Spensberger, Anne Segonds-Pichon, Michael Wilson, Simon Walker, Hanneke Okkenhaug, Sabina Cosulich, Phillip T. Hawkins, Len Stephens
Được phát hành 2023Artigo -
13
PTEN Regulates PI(3,4)P2 Signaling Downstream of Class I PI3K Bằng Mouhannad Malek, Anna Kielkowska, Tamara Chessa, Karen E. Anderson, David Barneda, Pınar Pir, Hiroki Nakanishi, Satoshi Eguchi, Atsushi Koizumi, Junko Sasaki, Véronique Juvin, Vladimir Yu Kiselev, Izabella Niewczas, Alexander Gray, Alexandre Valayer, Dominik Spensberger, Marine Imbert, Sérgio Luís Felisbino, Tomonori Habuchi, Sören Beinke, Sabina Cosulich, Nicolas Le Novère, Takehiko Sasaki, Jonathan Clark, Phillip T. Hawkins, Len Stephens
Được phát hành 2017Artigo -
14
The synthetic lethal interaction between CDS1 and CDS2 is a vulnerability in uveal melanoma and across multiple tumor types Bằng Pui Ying Chan, Diana Alexander, Ishan Mehta, Larissa Satiko Alcântara Sekimoto Matsuyama, Victoria Harle, Rebeca Olvera-León, Jun Sung Park, Fernanda Guadalupe Arriaga-González, Louise van der Weyden, Saamin Cheema, Vivek Iyer, Victoria Offord, David Barneda, Phillip T. Hawkins, Len Stephens, Zuzanna Kozik, Michael Woods, Kim Ping Wong, Gabriel Balmus, Alessandro Vinceti, Nicola Thompson, Martin Del Castillo Velasco‐Herrera, Lodewyk F.A. Wessels, Joris van de Haar, Emanuel Gonçalves, Sanju Sinha, Martha Estefanía Vázquez-Cruz, Luisa Bisceglia, Francesco Raimondi, Jyoti S. Choudhary, Sumeet Patiyal, Anjan Venkatesh, Francesco Iorio, Colm J. Ryan, David J. Adams
Được phát hành 2025Artigo
Công cụ tìm kiếm:
Các môn học liên quan
Biology
Biochemistry
Cell biology
Cancer research
Chemistry
Gene
Cancer
Genetics
Lipid droplet
Phosphorylation
Signal transduction
Adipose tissue
Biogenesis
Enzyme
Membrane
PI3K/AKT/mTOR pathway
PTEN
Phosphatase
Stem cell
Adipocyte
Cancer cell
Cancer stem cell
Computational biology
Endoplasmic reticulum
Internal medicine
Kinase
Lipid metabolism
Medicine
Organelle
Pancreatic cancer