ML277 specifically enhances the fully activated open state of KCNQ1 by modulating VSD-pore coupling

  1. Panpan Hou
  2. Jingyi Shi
  3. Kelli McFarland White
  4. Yuan Gao
  5. Jianmin Cui  Is a corresponding author
  1. Washington University in St Louis, United States
  2. Tencent AI lab, China

Peer review process

This article was accepted for publication via eLife's original publishing model. eLife publishes the authors' accepted manuscript as a PDF only version before the full Version of Record is ready for publication. Peer reviews are published along with the Version of Record.

History

  1. Version of Record published
  2. Accepted Manuscript published
  3. Accepted
  4. Received

Download links

A two-part list of links to download the article, or parts of the article, in various formats.

Downloads (link to download the article as PDF)

Open citations (links to open the citations from this article in various online reference manager services)

Cite this article (links to download the citations from this article in formats compatible with various reference manager tools)

  1. Panpan Hou
  2. Jingyi Shi
  3. Kelli McFarland White
  4. Yuan Gao
  5. Jianmin Cui
(2019)
ML277 specifically enhances the fully activated open state of KCNQ1 by modulating VSD-pore coupling
eLife 8:e48576.
https://doi.org/10.7554/eLife.48576

Share this article

https://doi.org/10.7554/eLife.48576