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Structural centrosome aberrations promote non‐cell‐autonomous invasiveness  | The EMBO Journal
Structural centrosome aberrations promote non‐cell‐autonomous invasiveness | The EMBO Journal

PDF) Necroptosis promotes cell-autonomous activation of proinflammatory  cytokine gene expression
PDF) Necroptosis promotes cell-autonomous activation of proinflammatory cytokine gene expression

Cellular Self-Defense: How Cell-Autonomous Immunity Protects Against  Pathogens | Science
Cellular Self-Defense: How Cell-Autonomous Immunity Protects Against Pathogens | Science

Biomolecules | Free Full-Text | The UPR in Neurodegenerative Disease: Not  Just an Inside Job | HTML
Biomolecules | Free Full-Text | The UPR in Neurodegenerative Disease: Not Just an Inside Job | HTML

Epigenetic Memory Underlies Cell-Autonomous Heterogeneous Behavior of  Hematopoietic Stem Cells - ScienceDirect
Epigenetic Memory Underlies Cell-Autonomous Heterogeneous Behavior of Hematopoietic Stem Cells - ScienceDirect

Cell-Autonomous and Non-cell-Autonomous Pathogenic Mechanisms in  Huntington's Disease: Insights from In Vitro and In Vivo Models |  SpringerLink
Cell-Autonomous and Non-cell-Autonomous Pathogenic Mechanisms in Huntington's Disease: Insights from In Vitro and In Vivo Models | SpringerLink

Entosis: The emerging face of non-cell-autonomous type IV programmed death  - ScienceDirect
Entosis: The emerging face of non-cell-autonomous type IV programmed death - ScienceDirect

A non-cell-autonomous actin redistribution enables isotropic retinal growth
A non-cell-autonomous actin redistribution enables isotropic retinal growth

Innate, adaptive, and cell-autonomous immunity against Toxoplasma gondii  infection | Experimental & Molecular Medicine
Innate, adaptive, and cell-autonomous immunity against Toxoplasma gondii infection | Experimental & Molecular Medicine

A cell autonomous torsinA requirement for cholinergic neuron survival and  motor control | eLife
A cell autonomous torsinA requirement for cholinergic neuron survival and motor control | eLife

A non-cell-autonomous actin redistribution enables isotropic retinal growth
A non-cell-autonomous actin redistribution enables isotropic retinal growth

MAPK activity dynamics regulate non-cell autonomous effects of oncogene  expression | eLife
MAPK activity dynamics regulate non-cell autonomous effects of oncogene expression | eLife

Cell-Autonomous and Non–Cell-Autonomous Mechanisms of Transformation by  Amplified FGFR1 in Lung Cancer | Cancer Discovery
Cell-Autonomous and Non–Cell-Autonomous Mechanisms of Transformation by Amplified FGFR1 in Lung Cancer | Cancer Discovery

Cell-autonomous vs. non-cell-autonomous models of caspase signaling.... |  Download Scientific Diagram
Cell-autonomous vs. non-cell-autonomous models of caspase signaling.... | Download Scientific Diagram

Autonomous beating rate adaptation in human stem cell-derived  cardiomyocytes | Nature Communications
Autonomous beating rate adaptation in human stem cell-derived cardiomyocytes | Nature Communications

Frontiers | Brain Organoids as Model Systems for Genetic Neurodevelopmental  Disorders | Cell and Developmental Biology
Frontiers | Brain Organoids as Model Systems for Genetic Neurodevelopmental Disorders | Cell and Developmental Biology

A Cell-Autonomous Signature of Dysregulated Protein Phosphorylation  Underlies Muscle Insulin Resistance in Type 2 Diabetes - ScienceDirect
A Cell-Autonomous Signature of Dysregulated Protein Phosphorylation Underlies Muscle Insulin Resistance in Type 2 Diabetes - ScienceDirect

Caspase-10: a molecular switch from cell-autonomous apoptosis to communal  cell death in response to chemotherapeutic drug treatment | Cell Death &  Differentiation
Caspase-10: a molecular switch from cell-autonomous apoptosis to communal cell death in response to chemotherapeutic drug treatment | Cell Death & Differentiation

Help-me signaling: Non-cell autonomous mechanisms of neuroprotection and  neurorecovery - ScienceDirect
Help-me signaling: Non-cell autonomous mechanisms of neuroprotection and neurorecovery - ScienceDirect

Neuroepithelial cell competition triggers loss of cellular juvenescence |  Scientific Reports
Neuroepithelial cell competition triggers loss of cellular juvenescence | Scientific Reports

A non-cell-autonomous actin redistribution enables isotropic retinal growth
A non-cell-autonomous actin redistribution enables isotropic retinal growth

PDF) Genetic dissection of a cell-autonomous neurodegenerative disorder:  Lessons learned from mouse models of Niemann-Pick disease type C
PDF) Genetic dissection of a cell-autonomous neurodegenerative disorder: Lessons learned from mouse models of Niemann-Pick disease type C

Cell autonomous and non-autonomous functions of plant intracellular immune  receptors in stomatal defense and apoplastic defense
Cell autonomous and non-autonomous functions of plant intracellular immune receptors in stomatal defense and apoplastic defense

Cell-autonomous and cell non-autonomous signaling through endothelin  receptor B during melanocyte development | Development
Cell-autonomous and cell non-autonomous signaling through endothelin receptor B during melanocyte development | Development

A non-cell-autonomous actin redistribution enables isotropic retinal growth
A non-cell-autonomous actin redistribution enables isotropic retinal growth

Signal integration by GSK3 kinases in the root | Nature Cell Biology
Signal integration by GSK3 kinases in the root | Nature Cell Biology

A non-cell-autonomous actin redistribution enables isotropic retinal growth
A non-cell-autonomous actin redistribution enables isotropic retinal growth