Novel mutations in malonyl-CoA-acyl carrier protein transacylase provoke autosomal recessive optic neuropathy

Author:

Li Huiping12,Yuan Shiqin12,Minegishi Yuriko1,Suga Akiko1,Yoshitake Kazutoshi1,Sheng Xunlun2,Ye Jianping3,Smith Stuart4,Bunkoczi Gabor5,Yamamoto Megumi1,Iwata Takeshi1

Affiliation:

1. Division of Molecular and Cellular Biology, National Institute of Sensory Organs, National Hospital Organization Tokyo Medical Center, 2-5-1, Higashigaoka, Meguro-ku, Tokyo, 152-8902, Japan

2. Ningxia Clinical Research Center of Blinding Eye Disease, Ningxia Eye Hospital, People Hospital of Ningxia Hui Autonomous Region, No. 936, Huang He East Road,Yinchuan, 750001, China

3. Pennington Biomedical Research Center, Louisiana State University Systems, 6400, Perkin Road, Baton Rouge, LA, 70808, USA

4. Children’s Hospital Oakland Research Institute, 5700, Martin Luther King Jr. Way, Oakland, CA, 94609, USA

5. Astex Pharmaceuticals, 436, Cambridge Science Park, Cambridge, CB4 0QA, UK

Abstract

Abstract Inherited optic neuropathies are rare eye diseases of optic nerve dysfunction that present in various genetic forms. Previously, mutation in three genes encoding mitochondrial proteins has been implicated in autosomal recessive forms of optic atrophy that involve progressive degeneration of optic nerve and retinal ganglion cells (RGC). Using whole exome analysis, a novel double homozygous mutation p.L81R and pR212W in malonyl CoA-acyl carrier protein transacylase (MCAT), a mitochondrial protein involved in fatty acid biosynthesis, has now been identified as responsible for an autosomal recessive optic neuropathy from a Chinese consanguineous family. MCAT is expressed in RGC that are rich in mitochondria. The disease variants lead to structurally unstable MCAT protein with significantly reduced intracellular expression. RGC-specific knockdown of Mcat in mice, lead to an attenuated retinal neurofiber layer, that resembles the phenotype of optic neuropathy. These results indicated that MCAT plays an essential role in mitochondrial function and maintenance of RGC axons, while novel MCAT p.L81R and p.R212W mutations can lead to optic neuropathy.

Funder

Japan Agency for Medical Research and Development

Science and Technology Cooperation Project of East and West Region of China

National Nature Science Foundation of China

Key Research and Development Program of Ningxia

Nature Science Foundation of Ningxia

Publisher

Oxford University Press (OUP)

Subject

Genetics(clinical),Genetics,Molecular Biology,General Medicine

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3. Mitochondrial fatty acid synthesis is an emergent central regulator of mammalian oxidative metabolism;Cell Metabolism;2024-01

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