Aligning Science Across Parkinson's Logo Text

Ca2+ channels couple spiking to mitochondrial metabolism in substantia nigra dopaminergic neurons

Output Details

Published September 22, 2022

How do neurons match generation of adenosine triphosphate by mitochondria to the bioenergetic demands of regenerative activity? Although the subject of speculation, this coupling is still poorly understood, particularly in neurons that are tonically active. To help fill this gap, pacemaking substantia nigra dopaminergic neurons were studied using a combination of optical, electrophysiological, and molecular approaches. In these neurons, spike-activated calcium (Ca2+) entry through Cav1 channels triggered Ca2+ release from the endoplasmic reticulum, which stimulated mitochondrial oxidative phosphorylation through two complementary Ca2+-dependent mechanisms: one mediated by the mitochondrial uniporter and another by the malate-aspartate shuttle. Disrupting either mechanism impaired the ability of dopaminergic neurons to sustain spike activity. While this feedforward control helps dopaminergic neurons meet the bioenergetic demands associated with sustained spiking, it is also responsible for their elevated oxidant stress and possibly to their decline with aging and disease.
Identifier (DOI)
10.1126/sciadv.abp8701
Tags
  • Calcium
  • Dopaminergic neurons
  • Electrophysiology
  • Metabolism
  • Mitochondria
  • Mouse
  • Original Research
  • Substantia nigra

Meet the Authors

  • User avatar fallback logo

    Enrico Zampese, PhD

    Key Personnel: Team Surmeier

    Northwestern University

  • User avatar fallback logo

    David L. Wokosin

    External Collaborator

  • Patricia Gonzalez-Rodriguez, PhD

    Key Personnel: Team Surmeier

    University of Seville

  • User avatar fallback logo

    Jaime Guzman, MD, PhD

    Key Personnel: Team Surmeier

    Northwestern University

  • User avatar fallback logo

    Tatiana Tkatch

    External Collaborator

  • User avatar fallback logo

    Jyothisri Kondapalli

    External Collaborator

  • User avatar fallback logo

    William C. Surmeier

    External Collaborator

  • User avatar fallback logo

    Karis B. D’Alessandro

    External Collaborator

  • User avatar fallback logo

    Diego De Stefani

    External Collaborator

  • User avatar fallback logo

    Rosario Rizzuto

    External Collaborator

  • User avatar fallback logo

    Masamitsu Iino

    External Collaborator

  • User avatar fallback logo

    Jeffery D. Molkentin

    External Collaborator

  • User avatar fallback logo

    Navdeep S. Chandel

    External Collaborator

  • User avatar fallback logo

    Paul T. Schumacker

    External Collaborator

  • James Surmeier, PhD

    Lead PI (Core Leadership): Team Surmeier

    Northwestern University

Aligning Science Across Parkinson's
Privacy Overview

This website uses cookies so that we can provide you with the best user experience possible. Cookie information is stored in your browser and performs functions such as recognising you when you return to our website and helping our team to understand which sections of the website you find most interesting and useful.