Metaxin-2 tunes mitochondrial transportation and neuronal function in Drosophila

Ting Zhang1, Ling Li1, Xiaoyu Fan1

  • 1Children's Hospital, Zhejiang University School of Medicine, National Clinical Research Center for Child Health, Hangzhou, Zhejiang 310058, China.

Genetics
|December 10, 2024
PubMed

Insights

Drosophila Metaxin-2 (dMtx2), a protein on the mitochondrial outer membrane, is crucial for axonal mitochondrial transport and neuronal function. Its absence impairs mitochondrial distribution and causes fragmentation, affecting lifespan.

Area of Science:

  • Cell Biology
  • Neuroscience
  • Genetics

Background:

  • Metaxins are conserved mitochondrial outer membrane proteins involved in protein import.
  • Metaxin-2 (Mtx2) is vital for mitochondrial transport in C. elegans and human neurons.
  • Investigating Drosophila homologs CG5662 and CG8004 to understand Mtx2's neuronal role.

Purpose of the Study:

  • To elucidate the function of CG8004, the Drosophila homolog of Metaxin-2, in neuronal mitochondrial transport.
  • To determine the necessity of CG8004 for Drosophila survival, nervous system function, and mitochondrial dynamics.

Main Methods:

  • Gene knockout studies in Drosophila melanogaster (CG5662 and CG8004).
  • Conditional knockout in adult gustatory receptor neurons (GRNs).
  • Analysis of mitochondrial distribution, trafficking, and morphology in neurons.

Main Results:

  • CG8004 null mutants exhibit late pupal lethality; neuronal CG8004 is dispensable for survival but crucial for mitochondrial transport.
  • Neuronal CG8004 deficiency impairs axonal mitochondrial trafficking, reduces terminal mitochondrial content, and causes axonal fragmentation.
  • CG8004 interacts genetically with mitochondrial fusion proteins Marf and Opa1.
  • Loss of neuronal CG8004 impacts adult lifespan and healthspan.

Conclusions:

  • CG8004, designated Drosophila Metaxin-2 (dMtx2), plays a conserved, context-dependent role in axonal mitochondrial transport.
  • dMtx2 is essential for maintaining neuronal function and healthspan in adult Drosophila.
  • CG5662 does not compensate for the loss of CG8004 function.