Amanote Research
Register
Sign In
Discover open access scientific publications
Search, annotate, share and cite publications
Publications by Jinxiang Yuan
Differentiation-Coupled Induction of Human Cytomegalovirus Replication by Union of the Major Enhancer Retinoic Acid, Cyclic AMP, and NF-κB Response Elements
Journal of Virology
Insect Science
Immunology
Microbiology
Virology
Glycemic Control Is Associated With Atrial Structural Remodeling in Patients With Type 2 Diabetes
BMC Cardiovascular Disorders
Cardiovascular Medicine
Cardiology
Related publications
Prolonged Activation of NF-κB by Human Cytomegalovirus Promotes Efficient Viral Replication and Late Gene Expression
Virology
Virology
Reversal of Human Cytomegalovirus Major Immediate-Early Enhancer/Promoter Silencing in Quiescently Infected Cells via the Cyclic AMP Signaling Pathway
Journal of Virology
Insect Science
Immunology
Microbiology
Virology
Requirement of Multiple Cis-Acting Elements in the Human Cytomegalovirus Major Immediate-Early Distal Enhancer for Viral Gene Expression and Replication
Journal of Virology
Insect Science
Immunology
Microbiology
Virology
Two Gamma Interferon-Activated Site-Like Elements in the Human Cytomegalovirus Major Immediate-Early Promoter/Enhancer Are Important for Viral Replication
Journal of Virology
Insect Science
Immunology
Microbiology
Virology
The Interplay Between Cyclic AMP, MAPK, and NF-κB Pathways in Response to Proinflammatory Signals in Microglia
BioMed Research International
Immunology
Molecular Biology
Biochemistry
Microbiology
Medicine
Genetics
Elevated Cyclic AMP Inhibits NF-κB-mediated Transcription in Human Monocytic Cells and Endothelial Cells
Journal of Biological Chemistry
Biochemistry
Cell Biology
Molecular Biology
SAMHD1 Modulates Early Steps During Human Cytomegalovirus Infection by Limiting NF-κB Activation
Cell Reports
Biochemistry
Genetics
Molecular Biology
Osteoclast Differentiation Requires TAK1 and MKK6 for NFATc1 Induction and NF-κB Transactivation by RANKL
Cell Death and Differentiation
Cell Biology
Molecular Biology
Caffeic Acid Phenethyl Ester Decreases Cholangiocarcinoma Growth by Inhibition of NF-κB and Induction of Apoptosis
International Journal of Cancer
Cancer Research
Oncology