Sandbox Reserved 1653: Difference between revisions

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CTD and <scene name='86/868186/Beam_1_couleurs/1'>beams</scene> are intracellular. The beam interacts with the CTD, and both are required for mechanical activation of the channel. (architecture)
CTD and <scene name='86/868186/Beam_1_couleurs/1'>beams</scene> are intracellular. The beam interacts with the CTD, and both are required for mechanical activation of the channel. (architecture)
The <scene name='86/868186/Ctd_trimeric/1'>CTD</scene> is a trimeric structure and is a part of the pore module of piezo channel. The CTD interacts with the long <scene name='86/868186/Anchor/1'>anchorα</scene>, and forms a hydrophobic interface. This forms a tripartite interaction with the <scene name='86/868186/E_dans_ctd/1'>glutamate-rich regions of the CTD</scene> (mechanogating)
The <scene name='86/868186/Ctd_trimeric/1'>CTD</scene> is a trimeric structure and is a part of the pore module of piezo channel. The CTD interacts with the long <scene name='86/868186/Anchor/1'>anchorα</scene>, and forms a hydrophobic interface. This forms a tripartite interaction with the <scene name='86/868186/E_dans_ctd/1'>glutamate-rich regions of the CTD</scene> (mechanogating)<ref name="mechanogating"> DOI 10.1038/nature25743 </ref>
  It forms an intracellular vestibule along the z-axis, and it is essential for ion permeation properties. (archi) More precisely, the pore module of  
  It forms an intracellular vestibule along the z-axis, and it is essential for ion permeation properties. (archi) More precisely, the pore module of  
Piezo channels comprises the C-terminal region from residues 2172 to 2547. (architecture) The CTD triangular plane has a beam-facing side of the  
Piezo channels comprises the C-terminal region from residues 2172 to 2547. (architecture) The CTD triangular plane has a beam-facing side of the