keyword
https://read.qxmd.com/read/38559162/a-metastasis-associated-pannexin1-mutant-panx1-1-89-forms-a-minimalist-atp-release-channel
#41
Junjie Wang, Carsten Mim, Gerhard Dahll, Rene Barro-Soria
A truncated form of the ATP release channel pannexin 1 (Panx1), Panx1 1-89 , is enriched in metastatic breast cancer cells and has been proposed to mediate metastatic cell survival by increasing ATP release through mechanosensitive Panx1 channels. However, whether Panx1 1-89 on its own (without the presence of wtPanx1) mediates ATP release has not been tested. Here, we show that Panx1 1-89 by itself can form a constitutively active membrane channel, capable of releasing ATP even in the absence of wild type Panx1...
March 13, 2024: bioRxiv
https://read.qxmd.com/read/38559094/cell-extrusion-a-novel-mechanism-driving-neural-crest-cell-delamination
#42
Emma Moore, Ruonan Zhao, Mary C McKinney, Kexi Yi, Christopher Wood, Paul Trainor
Neural crest cells (NCC) comprise a heterogeneous population of cells with variable potency, that contribute to nearly every tissue and organ system throughout the body. Considered unique to vertebrates, NCC are transiently generated within the dorsolateral region of the neural plate or neural tube, during neurulation. Their delamination and migration are crucial events in embryo development as the differentiation of NCC is heavily influenced by their final resting locations. Previous work in avian and aquatic species has shown that NCC delaminate via an epithelial-mesenchymal transition (EMT), which transforms these stem and progenitor cells from static polarized epithelial cells into migratory mesenchymal cells with fluid front and back polarity...
March 12, 2024: bioRxiv
https://read.qxmd.com/read/38544741/-cmpx-overexpression-in-pseudomonas-aeruginosa-affects-biofilm-formation-and-cell-morphology-in-response-to-shear-stress
#43
JOURNAL ARTICLE
Audrey David, Mélissande Louis, Ali Tahrioui, Sophie Rodrigues, Clarisse Labbé, Olivier Maillot, Magalie Barreau, Olivier Lesouhaitier, Pierre Cornelis, Sylvie Chevalier, Emeline Bouffartigues
UNLABELLED: Pseudomonas aeruginosa is an opportunistic pathogen causing chronic infections that are related to its ability to form biofilms. Mechanosensitive ion channels (Mcs) are cytoplasmic membrane proteins whose opening depends on a mechanical stress impacting the lipid bilayer. CmpX is a homologue of the small conductance MscS of Escherichia coli . The cmpX gene is part of a transcriptional cfrX-cmpX unit that is under the control of the cell envelope stress response ECF sigma factor SigX...
June 2024: Biofilm
https://read.qxmd.com/read/38541702/roles-of-mechanosensitive-channel-piezo1-in-wound-healing-and-scar-formation
#44
REVIEW
Hans-Oliver Rennekampff, Mayer Tenenhaus, Isabelle Rennekampff, Ziyad Alharbi
The ability to heal one's wounds is perhaps one of the most fundamental and critical of physiologic processes. This coordinated and closely regulated sequential biological process involves a variety of migratory and resident cells. The activation, modulation, balance, and control of these functions depend upon soluble mediators that activate cells and modulate their diverse functions. Recent advances have identified mechanotransduction as functionally integral in many different cell types and physiologic processes...
March 13, 2024: Life
https://read.qxmd.com/read/38539612/in-vitro-pharmacological-modulation-of-piezo1-channels-in-frontal-cortex-neuronal-networks
#45
JOURNAL ARTICLE
Pegah Haghighi, Mandee K Schaub, Adam H Shebindu, Gayathri Vijayakumar, Armaan Sood, Rafael Granja-Vazquez, Sourav S Patnaik, Caroline N Jones, Gregory O Dussor, Joseph J Pancrazio
PIEZO1 is a mechanosensitive ion channel expressed in various organs, including but not limited to the brain, heart, lungs, kidneys, bone, and skin. PIEZO1 has been implicated in astrocyte, microglia, capillary, and oligodendrocyte signaling in the mammalian cortex. Using murine embryonic frontal cortex tissue, we examined the protein expression and functionality of PIEZO1 channels in cultured networks leveraging substrate-integrated microelectrode arrays (MEAs) with additional quantitative results from calcium imaging and whole-cell patch-clamp electrophysiology...
February 27, 2024: Brain Sciences
https://read.qxmd.com/read/38530239/piezo1-channels-restrain-ilc2s-and-regulate-the-development-of-airway-hyperreactivity
#46
JOURNAL ARTICLE
Benjamin P Hurrell, Stephen Shen, Xin Li, Yoshihiro Sakano, Mohammad Hossein Kazemi, Christine Quach, Pedram Shafiei-Jahani, Kei Sakano, Homayon Ghiasi, Omid Akbari
Mechanosensitive ion channels sense force and pressure in immune cells to drive the inflammatory response in highly mechanical organs. Here, we report that Piezo1 channels repress group 2 innate lymphoid cell (ILC2)-driven type 2 inflammation in the lungs. Piezo1 is induced on lung ILC2s upon activation, as genetic ablation of Piezo1 in ILC2s increases their function and exacerbates the development of airway hyperreactivity (AHR). Conversely, Piezo1 agonist Yoda1 reduces ILC2-driven lung inflammation. Mechanistically, Yoda1 inhibits ILC2 cytokine secretion and proliferation in a KLF2-dependent manner, as we found that Piezo1 engagement reduces ILC2 oxidative metabolism...
May 6, 2024: Journal of Experimental Medicine
https://read.qxmd.com/read/38521071/monitoring-the-conformational-ensemble-and-lipid-environment-of-a-mechanosensitive-channel-under-cyclodextrin-induced-membrane-tension
#47
JOURNAL ARTICLE
Benjamin J Lane, Yue Ma, Nana Yan, Bolin Wang, Katrin Ackermann, Theodoros K Karamanos, Bela E Bode, Christos Pliotas
Membrane forces shift the equilibria of mechanosensitive channels enabling them to convert mechanical cues into electrical signals. Molecular tools to stabilize and methods to capture their highly dynamic states are lacking. Cyclodextrins can mimic tension through the sequestering of lipids from membranes. Here we probe the conformational ensemble of MscS by EPR spectroscopy, the lipid environment with NMR, and function with electrophysiology under cyclodextrin-induced tension. We show the extent of MscS activation depends on the cyclodextrin-to-lipid ratio, and that lipids are depleted slower when MscS is present...
March 21, 2024: Structure
https://read.qxmd.com/read/38520402/pacemaking-in-the-lymphatic-system
#48
JOURNAL ARTICLE
Michael J Davis, Scott D Zawieja
Lymphatic collecting vessels exhibit spontaneous phasic contractions that are critical for lymph propulsion and tissue fluid homeostasis. This rhythmic activity is driven by action potentials conducted across the lymphatic muscle cell (LMC) layer to produce entrained contractions. The contraction frequency of a lymphatic collecting vessel displays exquisite mechanosensitivity, with a dynamic range from <1 to >20 contractions per minute. A myogenic pacemaker mechanism intrinsic to the LMCs was initially postulated to account for pressure-dependent chronotropy...
March 23, 2024: Journal of Physiology
https://read.qxmd.com/read/38514727/mechanosensitive-trpv4-channel-guides-maturation-and-organization-of-the-bilayered-mammary-epithelium
#49
JOURNAL ARTICLE
Kärki Tytti, Koskimäki Sanna, Guenther Carla, Pirhonen Jonatan, Rajakylä Kaisa, Tojkander Sari
Biophysical cues from the cell microenvironment are detected by mechanosensitive components at the cell surface. Such machineries convert physical information into biochemical signaling cascades within cells, subsequently leading to various cellular responses in a stimulus-dependent manner. At the surface of extracellular environment and cell cytoplasm exist several ion channel families that are activated by mechanical signals to direct intracellular events. One of such channel is formed by transient receptor potential cation channel subfamily V member, TRPV4 that is known to act as a mechanosensor in wide variaty of tissues and control ion-influx in a spatio-temporal way...
March 21, 2024: Scientific Reports
https://read.qxmd.com/read/38514304/unlocking-mechanosensitivity-integrins-in-neural-adaptation
#50
REVIEW
Fanny Jaudon, Lorenzo A Cingolani
Mechanosensitivity extends beyond sensory cells to encompass most neurons in the brain. Here, we explore recent research on the role of integrins, a diverse family of adhesion molecules, as crucial biomechanical sensors translating mechanical forces into biochemical and electrical signals in the brain. The varied biomechanical properties of neuronal integrins, including their force-dependent conformational states and ligand interactions, dictate their specific functions. We discuss new findings on how integrins regulate filopodia and dendritic spines, shedding light on their contributions to synaptic plasticity, and explore recent discoveries on how they engage with metabotropic receptors and ion channels, highlighting their direct participation in electromechanical transduction...
March 20, 2024: Trends in Cell Biology
https://read.qxmd.com/read/38509850/robotic-actuation-mediated-quantitative-mechanogenetics-for-noninvasive-and-on-demand-cancer-therapy
#51
JOURNAL ARTICLE
Yangyi Liu, Jingjing Li, Yi Zhang, Fan Wang, Juanjuan Su, Chao Ma, Shuyi Zhang, Yanan Du, Chunhai Fan, Hongjie Zhang, Kai Liu
Cell mechanotransduction signals are important targets for physical therapy. However, current physiotherapy heavily relies on ultrasound, which is generated by high-power equipment or amplified by auxiliary drugs, potentially causing undesired side effects. To address current limitations, a robotic actuation-mediated therapy is developed that utilizes gentle mechanical loads to activate mechanosensitive ion channels. The resulting calcium influx precisely regulated the expression of recombinant tumor suppressor protein and death-associated protein kinase, leading to programmed apoptosis of cancer cell line through caspase-dependent pathway...
March 21, 2024: Advanced Science (Weinheim, Baden-Wurttemberg, Germany)
https://read.qxmd.com/read/38505983/noninvasive-intervention-by-transcranial-ultrasound-stimulation-modulation-of-neural-circuits-and-its-clinical-perspectives
#52
JOURNAL ARTICLE
Takahiro Osada, Seiki Konishi
Low-intensity focused transcranial ultrasound stimulation (TUS) is an emerging noninvasive technique capable of stimulating both the cerebral cortex and deep brain structures with high spatial precision. This method is recognized for its potential to comprehensively perturb various brain regions, enabling the modulation of neural circuits, in a manner not achievable through conventional magnetic or electrical brain stimulation techniques. The underlying mechanisms of neuromodulation are based on a phenomenon where mechanical waves of ultrasound kinetically interact with neurons, specifically affecting neuronal membranes and mechanosensitive channels...
March 20, 2024: Psychiatry and Clinical Neurosciences
https://read.qxmd.com/read/38505510/towards-an-ion-channel-centric-approach-to-ultrasound-neuromodulation
#53
JOURNAL ARTICLE
Martin Loynaz Prieto, Merritt Maduke
Ultrasound neuromodulation is a promising technology that could revolutionize study and treatment of brain conditions ranging from mood disorders to Alzheimer's disease and stroke. An understanding of how ultrasound directly modulates specific ion channels could provide a roadmap for targeting specific neurological circuits and achieving desired neurophysiological outcomes. Although experimental challenges make it difficult to unambiguously identify which ion channels are sensitive to ultrasound in vivo , recent progress indicates that there are likely several different ion channels involved, including members of the K2P, Piezo, and TRP channel families...
April 2024: Current Opinion in Behavioral Sciences
https://read.qxmd.com/read/38505424/subcellular-mechano-regulation-of-cell-migration-in-confined-extracellular-microenvironment
#54
REVIEW
Daesan Kim, Dong-Hwee Kim
Cell migration is a highly coordinated cellular event that determines diverse physiological and pathological processes in which the continuous interaction of a migrating cell with neighboring cells or the extracellular matrix is regulated by the physical setting of the extracellular microenvironment. In confined spaces, cell migration occurs differently compared to unconfined open spaces owing to the additional forces that limit cell motility, which create a driving bias for cells to invade the confined space, resulting in a distinct cell motility process compared to what is expected in open spaces...
December 2023: Biophysics reviews
https://read.qxmd.com/read/38505098/alterations-of-dna-methylation-profile-in-peripheral-blood-of-children-with-simple-obesity
#55
JOURNAL ARTICLE
Yi Ren, Peng Huang, Xiaoyan Huang, Lu Zhang, Lingjuan Liu, Wei Xiang, Liqun Liu, Xiaojie He
PURPOSE: To investigate the association between DNA methylation and childhood simple obesity. METHODS: Genome-wide analysis of DNA methylation was conducted on peripheral blood samples from 41 children with simple obesity and 31 normal controls to identify differentially methylated sites (DMS). Subsequently, gene functional analysis of differentially methylated genes (DMGs) was carried out. After screening the characteristic DMGs based on specific conditions, the methylated levels of these DMS were evaluated and verified by pyrosequencing...
December 2024: Health Information Science and Systems
https://read.qxmd.com/read/38501596/mechanosensitive-channel-mscl-gating-transitions-coupling-with-constriction-point-shift
#56
JOURNAL ARTICLE
Mingfeng Zhang, Siyang Tang, Xiaomin Wang, Sanhua Fang, Yuezhou Li
The mechanosensitive channel of large conductance (MscL) acts as an "emergency release valve" that protects bacterial cells from acute hypoosmotic stress, and it serves as a paradigm for studying the mechanism underlying the transduction of mechanical forces. MscL gating is proposed to initiate with an expansion without opening, followed by subsequent pore opening via a number of intermediate substates, and ends in a full opening. However, the details of gating process are still largely unknown. Using in vivo viability assay, single channel patch clamp recording, cysteine cross-linking, and tryptophan fluorescence quenching approach, we identified and characterized MscL mutants with different occupancies of constriction region in the pore domain...
April 2024: Protein Science
https://read.qxmd.com/read/38499500/pannexin-3-deletion-in-mice-results-in-knee-osteoarthritis-and-intervertebral-disc-degeneration-after-forced-treadmill-running
#57
JOURNAL ARTICLE
Brent Wakefield, Justin Tang, Jeffrey L Hutchinson, Rehanna Kanji, Courtney Brooks, Matthew W Grol, Cheryle A Séguin, Silvia Penuela, Frank Beier
Pannexin 3 (Panx3) is a glycoprotein that forms mechanosensitive channels expressed in chondrocytes and annulus fibrosus cells of the intervertebral disc (IVD). Evidence suggests Panx3 plays contrasting roles in traumatic versus aging osteoarthritis (OA) and intervertebral disc degeneration (IDD). However, whether its deletion influences the response of joint tissue to forced use is unknown. The purpose of this study was to determine if Panx3 deletion in mice causes increased knee joint OA and IDD after forced treadmill running...
March 18, 2024: Journal of Orthopaedic Research: Official Publication of the Orthopaedic Research Society
https://read.qxmd.com/read/38494915/piezo1-acts-as-a-cancer-suppressor-by-regulating-the-ros-wnt-%C3%AE-catenin-axis
#58
JOURNAL ARTICLE
Haimei Bo, Qi Wu, Chaonan Zhu, Yang Zheng, Guang Cheng, Lihua Cui
BACKGROUND: PIEZO1 works differently in different cancers and at different stages of development. The objective of the current study was to explore the function and underlying mechanism of PIEZO1 in lung adenocarcinoma (LUAD) cells. METHODS: Different LUAD cell lines were treated with PIEZO1 inhibitor (GsMTx4) and agonist (Yoda1), and the expression of PIEZO1 in LUAD cells was detected using real-time quantitative PCR (RT-qPCR) and western blotting. The effects of PIEZO1 on invasion, migration and epithelial-mesenchymal transition (EMT) markers protein expression of LUAD cells were detected using the MTT assay, flow cytometry, transwell assay, wound-healing assay, and western blotting...
March 18, 2024: Thoracic Cancer
https://read.qxmd.com/read/38492957/magnetic-tweezers-in-cell-mechanics
#59
JOURNAL ARTICLE
Claudia Tanja Mierke
The chapter provides an overview of the applications of magnetic tweezers in living cells. It discusses the advantages and disadvantages of magnetic tweezers technology with a focus on individual magnetic tweezers configurations, such as electromagnetic tweezers. Solutions to the disadvantages identified are also outlined. The specific role of magnetic tweezers in the field of mechanobiology, such as mechanosensitivity, mechano-allostery and mechanotransduction are also emphasized. The specific usage of magnetic tweezers in mechanically probing cells via specific cell surface receptors, such as mechanosensitive channels is discussed and why mechanical probing has revealed the opening and closing of the channels...
2024: Methods in Enzymology
https://read.qxmd.com/read/38490299/roles-of-mechanosensitive-ion-channel-piezo1-in-the-pathogenesis-of-brain-injury-after-experimental-intracerebral-hemorrhage
#60
JOURNAL ARTICLE
Min Qi, Ran Liu, Fan Zhang, Zhipeng Yao, Meng-Liang Zhou, Xiaochun Jiang, Shizhang Ling
Secondary brain injury after intracerebral hemorrhage (ICH) is the main cause of poor prognosis in ICH patients, but the underlying mechanisms remain less known. The involvement of Piezo1 in brain injury after ICH was studied in a mouse model of ICH. ICH was established by injecting autologous arterial blood into the basal ganglia in mice. After vehicle, Piezo1 blocker, GsMTx4, Piezo1 activator, Yoda-1, or together with mannitol (tail vein injection) was injected into the left lateral ventricle of mouse brain, Piezo1 level and the roles of Piezo1 in neuronal injury, brain edema, and neurological dysfunctions after ICH were determined by the various indicated methods...
June 15, 2024: Neuropharmacology
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