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注意:仅列出部分参考文献,下载原文获取全部文献信息。The mechanosensitive Piezo1 channel: structural features and molecular bases underlying its ion permeation and mechanotransduction
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Endothelial cation channel PIEZO1 controls blood pressure by mediating flow-induced ATP release
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Ion Permeation and Mechanotransduction Mechanisms of Mechanosensitive Piezo Channels
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Removal of the mechanoprotective influence of the cytoskeleton reveals PIEZO1 is gated by bilayer tension
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Piezo1 Channels Are Inherently Mechanosensitive
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Architecture of the mammalian mechanosensitive Piezol channel
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Piezo2 is the principal mechanotransduction channel for proprioception
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Impaired PIEZO1 function in patients with a novel autosomal recessive congenital lymphatic dysplasia
Viktor Lukacs et al.
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Novel mutations in PIEZO1 cause an autosomal recessive generalized lymphatic dysplasia with non-immune hydrops fetalis
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Piezo1 ion channel pore properties are dictated by C-terminal region
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Chemical activation of the mechanotransduction channel Piezo1
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Mechanical sensitivity of Piezo1 ion channels can be tuned by cellular membrane tension
Amanda H. Lewis et al.
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Piezo2 is the major transducer of mechanical forces for touch sensation in mice
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Epidermal Merkel cells are mechanosensory cells that tune mammalian touch receptors
Srdjan Maksimovic et al.
NATURE (2014)
Piezo2 is required for Merkel-cell mechanotransduction
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Piezol integration of vascular architecture with physiological force
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Piezo1, a mechanically activated ion channel, is required for vascular development in mice
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Feeling the hidden mechanical forces in lipid bilayer is an original sense
Andriy Anishkin et al.
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The Structure of a Conserved Piezo Channel Domain Reveals a Topologically Distinct β Sandwich Fold
Aron Kamajaya et al.
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Tuning Piezo ion channels to detect molecular-scale movements relevant for fine touch
Kate Poole et al.
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Structure of the TRPV1 ion channel determined by electron cryo-microscopy
Maofu Liao et al.
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Gain-of-function mutations in the mechanically activated ion channel PIEZO2 cause a subtype of Distal Arthrogryposis
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Mutations in the mechanotransduction protein PIEZO1 are associated with hereditary xerocytosis
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Piezo proteins are pore-forming subunits of mechanically activated channels
Bertrand Coste et al.
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Piezo1 and Piezo2 Are Essential Components of Distinct Mechanically Activated Cation Channels
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Pore architecture and ion sites in acid-sensing ion channels and P2X receptors
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Crystal structure of the ATP-gated P2X4 ion channel in the closed state
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Neurosensory mechanotransduction
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