4.6 Article

Hippo, Drosophila MST, is a novel modifier of motor neuron degeneration induced by knockdown of Caz, Drosophila FUS

Journal

EXPERIMENTAL CELL RESEARCH
Volume 371, Issue 2, Pages 311-321

Publisher

ELSEVIER INC
DOI: 10.1016/j.yexcr.2018.08.001

Keywords

Amyotrophic lateral sclerosis (ALS); Drosophila; Fused in Sarcoma (FUS); Cabeza (Caz); Hippo (hpo); Mammalian sterile 20 (STE20)-kinase (MST)

Funding

  1. JSPS KAKENHI Grant [JP26893227, JP16K19519, JP24659438]
  2. Grant for Joint Research Project of The Center for Advanced Insect Research Promotion, Kyoto Institute of Technology
  3. Nakabayashi Trust For ALS Research, Tokyo, Japan
  4. Advanced Science, Technology and Management Research Institute of KYOTO
  5. Japan Agency for Medical Research and Development (AMED) [17dk0207030h0002, 17ek0109222h0001]
  6. Japan Agency for Medical Research and Development (AMED)
  7. Ministry of Health, Labour and Welfare
  8. National Center of Neurology and Psychiatry [27-7]
  9. Japan Amyotrophic Lateral Sclerosis Association

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Mutations in the Fused in Sarcoma (FUS) gene have been identified in familial ALS in human. Drosophila contains a single ortholog of human FUS called Cabeza (Caz). We previously established Drosophila models of ALS targeted to Caz, which developed the locomotive dysfunction and caused anatomical defects in presynaptic terminals of motoneurons. Accumulating evidence suggests that ALS and cancer share defects in many cellular processes. The Hippo pathway was originally discovered in Drosophila and plays a role as a tumor suppressor in mammals. We aimed to determine whether Hippo pathway genes modify the ALS phenotype using Caz knockdown flies. We found a genetic link between Caz and Hippo (hpo), the Drosophila ortholog of human Mammalian sterile 20-like kinase (MST) 1 and 2. Loss-of-function mutations of hpo rescued Caz knockdown-induced eye- and neuronspecific defects. The decreased Caz levels in nuclei induced by Caz knockdown were also rescued by loss of function mutations of hpo. Moreover, hpo mRNA level was dramatically increased in Caz knockdown larvae, indicating that Caz negatively regulated hpo. Our results demonstrate that hpo, Drosophila MST, is a novel modifier of Drosophila FUS. Therapeutic targets that inhibit the function of MST could modify the pathogenic processes of ALS.

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