Results 111 to 120 of about 11,249 (206)
14‐3‐3 proteins: Regulators of cardiac excitation–contraction coupling and stress responses
Abstract figure legend 14‐3‐3 protein interactions in cardiac regulation. Schematic representation of 14‐3‐3 binding partners in excitation–contraction coupling, transcriptional regulation/development and stress response pathways. Asterisks indicate targets where the exact 14‐3‐3 binding site is unknown.
Heather C. Spooner, Rose E. Dixon
wiley +1 more source
Abstract figure legend A pre‐existing fibroblast signalling model was enhanced by integrating atrial‐specific components and reactions linked to atrial fibrosis and atrial fibrillation (AF). The analysis highlights the central role of Ca2⁺ signalling in driving profibrotic responses to AF‐relevant stimuli, angiotensin‐II and transforming growth factor ...
Najme Khorasani +5 more
wiley +1 more source
Abstract figure legend Schematic outlining the activation of hypoxia‐sensitive pathways, the influence of hypoxia and associated pathways on the cytoskeleton, and the impact of these on disease progression. Abstract A highly‐regulated and dynamic cytoskeleton is vital for functional cellular physiology and the maintenance of homeostasis.
Darragh Flood, Cormac T. Taylor
wiley +1 more source
Translating cardiovascular ion channel and Ca2+ signalling mechanisms into therapeutic insights
Abstract figure legend This white paper integrates mechanistic discoveries across ion channel biology, Ca2+ signalling and multiscale cardiovascular physiology to highlight new opportunities for accelerating research and guiding next‐generation therapies. Printed with permission from ®Anita Impagliazzo Medical Illustration. [Correction added on 2 March
Silvia Marchianò +18 more
wiley +1 more source
SAC phosphoinositide phosphatases at the tonoplast mediate vacuolar function in Arabidopsis. [PDF]
Nováková P +14 more
europepmc +1 more source
Vascular smooth muscle cell mechanotransduction: Pathways, phenotypes and emerging technologies
Abstract figure legend Vascular smooth muscle cells are exposed to mechanical stimuli from the blood flow and the extracellular matrix. The cells sense the signals from cyclic stretch, shear stress, hydrostatic pressure and matrix stiffness through specialized mechanosensors, such as mechanosensitive ion channels or cell surface receptors including ...
Nivethitha Kota Lakshminaraasimulu +3 more
wiley +1 more source
The Sac domain-containing phosphoinositide phosphatases: structure, function, and disease. [PDF]
Hsu F, Mao Y.
europepmc +1 more source
Abstract figure legend Regulatory mechanisms such as alternative splicing, post‐translational modification, membrane trafficking, and protein interactions control channel gating, membrane abundance, and overall activity of PIEZO2. Proper regulation supports PIEZO2‐dependent proprioceptive, somatosensory, nociceptive, pruriceptive and interoceptive ...
Eunice I. Oribamise +2 more
wiley +1 more source
Crystal Structure of a Phosphoinositide Phosphatase, MTMR2 [PDF]
Begley, Michael J +5 more
openaire +1 more source
ABSTRACT Obesity, a severe worldwide health concern, is characterized as an excessive deposit of fat in the human body. It has various ramifications that endanger human health and increase the financial expense. Obesity raises the risk of several illnesses, notably cardiovascular disease, NALFD, and diabetes, and has been associated with shorter ...
Sakhawat Riaz +6 more
wiley +1 more source

