Attenuated cerebellar phenotypes in Inpp4a truncation mutants with preserved phosphatase activity

Author:

Tran Dang Minh1,Yoshioka Nozomu1,Bizen Norihisa1,Mori-Ochiai Yukiko1,Yano Masato1,Yanai Shogo2,Hasegawa Junya2ORCID,Miyashita Satoshi34,Hoshino Mikio3,Sasaki Junko2,Sasaki Takehiko2,Takebayashi Hirohide15ORCID

Affiliation:

1. Graduate School of Medical and Dental Sciences, Niigata University 1 Division of Neurobiology and Anatomy , , Niigata 951-8510 , Japan

2. Medical Research Institute, Tokyo Medical and Dental University (TMDU) 2 Department of Biochemical Pathophysiology , , Tokyo 113-8510 , Japan

3. National Institute of Neuroscience, National Center of Neurology and Psychiatry (NCNP) 3 Department of Biochemistry and Cellular Biology , , Tokyo 187-8502 , Japan

4. Department of System Pathology for Neurological Disorders, Brain Research Institute, Niigata University 4 , Niigata 9518585 , Japan

5. Center for Coordination of Research Facilities (CCRF), Niigata University 5 , Niigata 951-8510 , Japan

Abstract

ABSTRACT Phosphoinositides (PIPs) act as intracellular signaling molecules that regulate various cellular processes. Abnormalities in PIP metabolism cause various pathological conditions, including neurodegenerative diseases, cancer and immune disorders. Several neurological diseases with diverse phenotypes, such as ataxia with cerebellar atrophy or intellectual disability without brain malformation, are caused by mutations in INPP4A, which encodes a phosphoinositide phosphatase. We examined two strains of Inpp4a mutant mice with distinct cerebellar phenotypes: the Inpp4aΔEx1,2 mutant exhibited striatal degeneration without cerebellar atrophy, and the Inpp4aΔEx23 mutant exhibited a severe striatal phenotype with cerebellar atrophy. Both strains exhibited reduced expression of Inpp4a mutant proteins in the cerebellum. N-terminal-truncated Inpp4a proteins were expressed from the Inpp4aΔEx1,2 allele by alternative translation initiation and had phosphatase activity for PI(3,4)P2, whereas the Inpp4a mutant protein encoded by Inpp4aΔEx23 completely lacked phosphatase activity. Our results indicate that the diverse phenotypes observed in Inpp4a-related neurological diseases could be due to the varying protein expression levels and retained phosphatase activity in different Inpp4a variants. These findings provide insights into the role of INPP4A mutations in disease pathogenesis and may help to develop personalized therapy.

Funder

Ministry of Education, Culture, Sports, Science and Technology

Uehara Memorial Foundation

Ono Medical Research Foundation

Kyowa-kai General Incorporated Foundation

Tokyo Medical and Dental University

Publisher

The Company of Biologists

Subject

General Biochemistry, Genetics and Molecular Biology,Immunology and Microbiology (miscellaneous),Medicine (miscellaneous),Neuroscience (miscellaneous)

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