2007The FASEB JournalRequires access

Mitochondrial dynamics and neurodegeneration

David C. Chan, Scott A. Detmer, Hsiuchen Chen

Open publisher page 2 citations

Abstract

Human genetic studies indicate that defects in mitochondrial dynamics lead to neurodegenerative disease. Charcot‐Marie‐Tooth disease type 2A (CMT2A) is caused by mutations in the mitofusin Mfn2. Mitofusins are mitochondrial outer membrane proteins essential for mitochondrial fusion. Dominant optic atrophy is caused by mutations in OPA1, a mitochondrial inner membrane protein also essential for mitochondrial fusion. We have used mouse models to understand how mutations in Mfn2 affect mitochondrial fusion, and how such defects lead to neurodegeneration. Using mice with a conditional null allele of Mfn2, we show that loss of Mfn2 leads to several cerebellar dysfunction. Our results indicate that mitochondrial fusion is required for the development and maintenance of specific neurons. In addition, using knock‐in mouse models of CMT2A, we have gained insight into how Mfn1 cooperates with Mfn2 to mediate mitochondrial fusion.

About this research paper

What this paper is about

Human genetic studies indicate that defects in mitochondrial dynamics lead to neurodegenerative disease. Charcot‐Marie‐Tooth disease type 2A (CMT2A) is caused by mutations in the mitofusin Mfn2. Mitofusins are mitochondrial outer membrane proteins essential for mitochondrial fusion. Dominant optic atrophy is caused by mutations in OPA1, a mitochondrial inner membrane protein also essential for mitochondrial fusion. We have used mouse models to understand how mutations in Mfn2 affect mitochondrial fusion, and how such defects lead to neurodegeneration. Using mice with a conditional null allele of Mfn2, we show that loss of Mfn2 leads to several cerebellar dysfunction. Our results indicate that mitochondrial fusion is required for the development and maintenance of specific neurons. In addition, using knock‐in mouse models of CMT2A, we have gained insight into how Mfn1 cooperates with Mfn2 to mediate mitochondrial fusion.

Why it matters

OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Human genetic studies indicate that defects in mitochondrial dynamics lead to neurodegenerative disease. Charcot‐Marie‐Tooth disease type 2A (CMT2A) is caused by mutations in the mitofusin Mfn2. Mitofusins are mitochondrial outer membrane proteins essential for mitochondrial fusion. Dominant optic atrophy is caused by mutations in OPA1, a mitochondrial inner membrane protein also essential for mitochondrial fusion. We have used mouse models to understand how mutations in Mfn2 affect mitochondrial fusion, and how such defects lead to neurodegeneration. Using mice with a conditional null allele of Mfn2, we show that loss of Mfn2 leads to several cerebellar dysfunction. Our results indicate that mitochondrial fusion is required for the development and maintenance of specific neurons. In addition, using knock‐in mouse models of CMT2A, we have gained insight into how Mfn1 cooperates with Mfn2 to mediate mitochondrial fusion.

Key concepts: MFN2, mitochondrial fusion, MFN1, Neurodegeneration, Biology, Mitochondrion, Mitochondrial disease, Cell biology

Related papers

Back to paper searchBrowse research topicsOriginal source
Mitochondrial dynamics and neurodegeneration — Research Paper | ScholarLens