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Nanodomain Ca²⁺ of Ca²⁺ channels detected by a tethered genetically encoded Ca²⁺ sensor.

Lai Hock Tay | Ivy E Dick | Wanjun Yang | Marco Mank | Oliver Griesbeck | David T Yue
Nature communications | 2012

Coupling of excitation to secretion, contraction and transcription often relies on Ca(2+) computations within the nanodomain-a conceptual region extending tens of nanometers from the cytoplasmic mouth of Ca(2+) channels. Theory predicts that nanodomain Ca(2+) signals differ vastly from the slow submicromolar signals routinely observed in bulk cytoplasm. However, direct visualization of nanodomain Ca(2+) far exceeds optical resolution of spatially distributed Ca(2+) indicators. Here we couple an optical, genetically encoded Ca(2+) indicator (TN-XL) to the carboxy tail of Ca(V)2.2 Ca(2+) channels, enabling near-field imaging of the nanodomain. Under total internal reflection fluorescence microscopy, we detect Ca(2+) responses indicative of large-amplitude pulses. Single-channel electrophysiology reveals a corresponding Ca(2+) influx of only 0.085 pA, and fluorescence resonance energy transfer measurements estimate TN-XL distance to the cytoplasmic mouth at ~55 Å. Altogether, these findings raise the possibility that Ca(2+) exits the channel through the analogue of molecular portals, mirroring the crystallographic images of side windows in voltage-gated K channels.

Pubmed ID: 22491326

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Associated grants

  • Agency: NIMH NIH HHS, United States
    Id: R01 MH065531
  • Agency: NHLBI NIH HHS, United States
    Id: T32 HL007227
  • Agency: NIDCD NIH HHS, United States
    Id: P30 DC005211
  • Agency: NHLBI NIH HHS, United States
    Id: T32 HL07227-35
  • Agency: NIMH NIH HHS, United States
    Id: R01 MH65531

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HEK293 (tool)

RRID:CVCL_0045

Cell line HEK293 is a Transformed cell line with a species of origin Homo sapiens (Human)

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