scholarly article | Q13442814 |
P50 | author | Allan Basbaum | Q4730473 |
Tulip Nuwal | Q112640647 | ||
P2093 | author name string | Yuh-Nung Jan | |
Bo Huang | |||
Lily Yeh Jan | |||
Fen Huang | |||
Xidao Wang | |||
Eric M. Ostertag | |||
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TMEM16B, a novel protein with calcium-dependent chloride channel activity, associates with a presynaptic protein complex in photoreceptor terminals | Q24314645 | ||
Superresolution imaging of chemical synapses in the brain | Q24599389 | ||
Mutations in ANO3 cause dominant craniocervical dystonia: ion channel implicated in pathogenesis | Q24602504 | ||
An efficient intrathecal delivery of small interfering RNA to the spinal cord and peripheral neurons | Q24810749 | ||
Vanilloid receptor-1 is essential for inflammatory thermal hyperalgesia | Q28144926 | ||
A diverse family of GPCRs expressed in specific subsets of nociceptive sensory neurons | Q28215950 | ||
Molecular mechanisms of nociception | Q28216291 | ||
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Ca2+-activated Cl− currents are dispensable for olfaction | Q28505852 | ||
The calcium-activated chloride channel anoctamin 1 acts as a heat sensor in nociceptive neurons | Q28506470 | ||
TRPM8 is required for cold sensation in mice | Q28509502 | ||
The sodium-activated potassium channel is encoded by a member of the Slo gene family | Q28570518 | ||
Slick (Slo2.1), a rapidly-gating sodium-activated potassium channel inhibited by ATP | Q28574688 | ||
TMEM16A confers receptor-activated calcium-dependent chloride conductance | Q28590097 | ||
TMEM16F Forms a Ca2+-Activated Cation Channel Required for Lipid Scrambling in Platelets during Blood Coagulation | Q28590146 | ||
The mechano-activated K+ channels TRAAK and TREK-1 control both warm and cold perception | Q28591983 | ||
Cellular and Molecular Mechanisms of Pain | Q29011961 | ||
Studies on expression and function of the TMEM16A calcium-activated chloride channel | Q30491820 | ||
Expanding the neuron's calcium signaling repertoire: intracellular calcium release via voltage-induced PLC and IP3R activation | Q33277110 | ||
Genome-wide resources of endoribonuclease-prepared short interfering RNAs for specific loss-of-function studies | Q33277841 | ||
Expression cloning of TMEM16A as a calcium-activated chloride channel subunit | Q33370813 | ||
Contribution of Na(v)1.8 sodium channels to action potential electrogenesis in DRG neurons | Q34086296 | ||
External cadmium and internal calcium block of single calcium channels in smooth muscle cells from rabbit mesenteric artery | Q34125250 | ||
Data mining of high density genomic variant data for prediction of Alzheimer's disease risk | Q34138248 | ||
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Tackling Pain at the Source: New Ideas about Nociceptors | Q34467545 | ||
TMEM16A, a membrane protein associated with calcium-dependent chloride channel activity | Q34821709 | ||
Conservation and evolution of gene coexpression networks in human and chimpanzee brains | Q35215128 | ||
Afadin, a Ras/Rap effector that controls cadherin function, promotes spine and excitatory synapse density in the hippocampus | Q35833781 | ||
Calcium-Activated Chloride Channels (CaCCs) Regulate Action Potential and Synaptic Response in Hippocampal Neurons | Q35898680 | ||
For K+ channels, Na+ is the new Ca2+. | Q36175148 | ||
Calcium-activated chloride channel TMEM16A modulates mucin secretion and airway smooth muscle contraction | Q36342946 | ||
Effect of Na(+) flow on Cd(2+) block of tetrodotoxin-resistant Na(+) channels. | Q36447163 | ||
Multiple sodium channels and their roles in electrogenesis within dorsal root ganglion neurons | Q36678533 | ||
Na+-mediated coupling between AMPA receptors and KNa channels shapes synaptic transmission | Q37081626 | ||
Na+-activated K+ channels express a large delayed outward current in neurons during normal physiology | Q37266972 | ||
Development in the STORM | Q38067207 | ||
Pharmacological properties of neuronal TTX-resistant sodium channels and the role of a critical serine pore residue | Q40404449 | ||
NAD+ activates KNa channels in dorsal root ganglion neurons. | Q42452591 | ||
Amino-termini isoforms of the Slack K+ channel, regulated by alternative promoters, differentially modulate rhythmic firing and adaptation | Q42597137 | ||
Restriction of Transient Receptor Potential Vanilloid-1 to the Peptidergic Subset of Primary Afferent Neurons Follows Its Developmental Downregulation in Nonpeptidergic Neurons | Q42848498 | ||
An electronic pressure-meter nociception paw test for rats | Q44827445 | ||
Slack and Slick K(Na) channels regulate the accuracy of timing of auditory neurons | Q48250784 | ||
The presence and role of the tetrodotoxin-resistant sodium channel Na(v)1.9 (NaN) in nociceptive primary afferent neurons. | Q49056592 | ||
Isolectin B(4)-positive and -negative nociceptors are functionally distinct. | Q51449831 | ||
Electrophysiological differences between nociceptive and non-nociceptive dorsal root ganglion neurones in the rat in vivo | Q60736394 | ||
Formation of intermediate-conductance calcium-activated potassium channels by interaction of Slack and Slo subunits | Q77299369 | ||
Generation of rat mutants using a coat color-tagged Sleeping Beauty transposon system | Q80448597 | ||
Production of Endoribonuclease-Prepared Short Interfering RNAs (esiRNAs) for Specific and Effective Gene Silencing in Mammalian Cells | Q83489629 | ||
P4510 | describes a project that uses | ImageJ | Q1659584 |
P433 | issue | 9 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 1284–1290 | |
P577 | publication date | 2013-09-01 | |
P1433 | published in | Nature Neuroscience | Q1535359 |
P1476 | title | TMEM16C facilitates Na(+)-activated K+ currents in rat sensory neurons and regulates pain processing | |
P478 | volume | 16 |
Q28066190 | A Pore Idea: the ion conduction pathway of TMEM16/ANO proteins is composed partly of lipid |
Q30830965 | A novel ANO3 variant identified in a 53-year-old woman presenting with hyperkinetic dysarthria, blepharospasm, hyperkinesias, and complex motor tics |
Q89964944 | ANO3 Mutations in Chinese Dystonia: A Genetic Screening Study Using Next-Generation Sequencing |
Q47661281 | ANO9/TMEM16J promotes tumourigenesis via EGFR and is a novel therapeutic target for pancreatic cancer. |
Q50000586 | An ancestral TMEM16 homolog from Dictyostelium discoideum forms a scramblase |
Q37593191 | Anoctamin 1 contributes to inflammatory and nerve-injury induced hypersensitivity |
Q92316393 | Anoctamin 3: A Possible Link between Cluster Headache and Ca2+ Signaling |
Q28077344 | Cellular functions of TMEM16/anoctamin |
Q55265914 | Chloride Homeostasis in Neurons With Special Emphasis on the Olivocerebellar System: Differential Roles for Transporters and Channels. |
Q34572775 | Common variants associated with general and MMR vaccine-related febrile seizures |
Q36949874 | Cryo-electron microscopy structure of the Slo2.2 Na(+)-activated K(+) channel |
Q33958421 | Emerging role of the KCNT1 Slack channel in intellectual disability |
Q27319989 | Epilepsy-Related Slack Channel Mutants Lead to Channel Over-Activity by Two Different Mechanisms |
Q92257321 | Exposure to Ionizing Radiation Triggers Prolonged Changes in Circular RNA Abundance in the Embryonic Mouse Brain and Primary Neurons |
Q64076570 | Haploinsufficiency of the brain-derived neurotrophic factor gene is associated with reduced pain sensitivity |
Q34957755 | Human slack potassium channel mutations increase positive cooperativity between individual channels |
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Q39166252 | International Union of Basic and Clinical Pharmacology. C. Nomenclature and Properties of Calcium-Activated and Sodium-Activated Potassium Channels |
Q36270776 | Knockout of Slo2.2 enhances itch, abolishes KNa current, and increases action potential firing frequency in DRG neurons |
Q64938265 | Known structures and unknown mechanisms of TMEM16 scramblases and channels. |
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Q37622078 | MrgC agonism at central terminals of primary sensory neurons inhibits neuropathic pain |
Q35555080 | Multiple transcripts of anoctamin genes expressed in the mouse submandibular salivary gland |
Q64923978 | Nociceptor Signalling through ion Channel Regulation via GPCRs. |
Q36238581 | Permeation Mechanisms in the TMEM16B Calcium-Activated Chloride Channels |
Q42318144 | Profile of Lily and Yuh Nung Jan, winners of the 2017 Vilcek Prize in Biomedical Science |
Q47689959 | Protein kinase A-induced internalization of Slack channels from the neuronal membrane occurs by adaptor protein-2/clathrin-mediated endocytosis |
Q98188932 | Rat models of human diseases and related phenotypes: a systematic inventory of the causative genes |
Q36950726 | Recent advances in the genetics of dystonia |
Q38182826 | Regulating excitability of peripheral afferents: emerging ion channel targets |
Q42281905 | SLC26A11 (KBAT) in Purkinje Cells Is Critical for Inhibitory Transmission and Contributes to Locomotor Coordination |
Q34339412 | SLO-2 potassium channel is an important regulator of neurotransmitter release in Caenorhabditis elegans |
Q38915666 | Selective serotonin reuptake inhibitors facilitate ANO6 (TMEM16F) current activation and phosphatidylserine exposure |
Q51015877 | Slack channels expressed in sensory neurons control neuropathic pain in mice |
Q36586021 | Slack sodium-activated potassium channel membrane expression requires p38 mitogen-activated protein kinase phosphorylation |
Q41700247 | Slick (Kcnt2) Sodium-Activated Potassium Channels Limit Peptidergic Nociceptor Excitability and Hyperalgesia |
Q64116363 | Sodium-activated potassium channels shape peripheral auditory function and activity of the primary auditory neurons in mice |
Q26851981 | Structure and function of TMEM16 proteins (anoctamins) |
Q34796577 | Subgroup-elimination transcriptomics identifies signaling proteins that define subclasses of TRPV1-positive neurons and a novel paracrine circuit |
Q38275906 | TMEM16 proteins: unknown structure and confusing functions. |
Q47686304 | TMEM16C cuts pain no SLACK. |
Q28600840 | The BRAIN Initiative Provides a Unifying Context for Integrating Core STEM Competencies into a Neurobiology Course |
Q42738774 | The nhTMEM16 Scramblase Is Also a Nonselective Ion Channel |
Q33739821 | Tumor necrosis factor α modulates sodium-activated potassium channel SLICK in rat dorsal horn neurons via p38 MAPK activation pathway |
Q33840478 | [EXPRESS] Slack KNa Channels Influence Dorsal Horn Synapses and Nociceptive Behavior |
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