Cargando…

A Novel SPAST Mutation Results in Spastin Accumulation and Defects in Microtubule Dynamics

BACKGROUND: Haploinsufficiency is widely accepted as the pathogenic mechanism of spastic paraplegia type 4 (SPG4). However, there are some cases that cannot be explained by reduced function of the spastin protein encoded by SPAST. OBJECTIVES: To identify the causative gene of autosomal dominant here...

Descripción completa

Detalles Bibliográficos
Autores principales: Chen, Rui, Du, Shiyue, Yao, Yanyi, Zhang, Lu, Luo, Junyu, Shen, Yinhua, Xu, Zhenping, Zeng, Xiaomei, Zhang, Luoying, Liu, Mugen, Yin, Chuang, Tang, Beisha, Tan, Jun, Xu, Xuan, Liu, Jing Yu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9300132/
https://www.ncbi.nlm.nih.gov/pubmed/34927746
http://dx.doi.org/10.1002/mds.28885
_version_ 1784751140779327488
author Chen, Rui
Du, Shiyue
Yao, Yanyi
Zhang, Lu
Luo, Junyu
Shen, Yinhua
Xu, Zhenping
Zeng, Xiaomei
Zhang, Luoying
Liu, Mugen
Yin, Chuang
Tang, Beisha
Tan, Jun
Xu, Xuan
Liu, Jing Yu
author_facet Chen, Rui
Du, Shiyue
Yao, Yanyi
Zhang, Lu
Luo, Junyu
Shen, Yinhua
Xu, Zhenping
Zeng, Xiaomei
Zhang, Luoying
Liu, Mugen
Yin, Chuang
Tang, Beisha
Tan, Jun
Xu, Xuan
Liu, Jing Yu
author_sort Chen, Rui
collection PubMed
description BACKGROUND: Haploinsufficiency is widely accepted as the pathogenic mechanism of spastic paraplegia type 4 (SPG4). However, there are some cases that cannot be explained by reduced function of the spastin protein encoded by SPAST. OBJECTIVES: To identify the causative gene of autosomal dominant hereditary spastic paraplegia in three large Chinese families and explore the pathological mechanism of a spastin variant. METHODS: Three large Chinese hereditary spastic paraplegia families with a total of 247 individuals (67 patients) were investigated, of whom 59 members were recruited to the study. Genetic testing was performed to identify the causative gene. Western blotting and immunofluorescence were used to analyze the effects of the mutant proteins in vitro. RESULTS: In the three hereditary spastic paraplegia families, of whom three index cases were misdiagnosed as other types of neurological diseases, a novel c.985dupA (p.Met329Asnfs*3) variant in SPAST was identified and was shown to cosegregate with the phenotype in the three families. The c.985dupA mutation produced two truncated mutants (mutant M1 and M87 isoforms) that accumulated to a higher level than their wild‐type counterparts. Furthermore, the mutant M1 isoform heavily decorated the microtubules and rendered them resistant to depolymerization. In contrast, the mutant M87 isoform was diffusely localized in both the nucleus and the cytoplasm, could not decorate microtubules, and was not able to promote microtubule disassembly. CONCLUSIONS: SPAST mutations leading to premature stop codons do not always act through haploinsufficiency. The truncated spastin may damage the corticospinal tracts through an isoform‐specific toxic effect.
format Online
Article
Text
id pubmed-9300132
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher John Wiley & Sons, Inc.
record_format MEDLINE/PubMed
spelling pubmed-93001322022-07-21 A Novel SPAST Mutation Results in Spastin Accumulation and Defects in Microtubule Dynamics Chen, Rui Du, Shiyue Yao, Yanyi Zhang, Lu Luo, Junyu Shen, Yinhua Xu, Zhenping Zeng, Xiaomei Zhang, Luoying Liu, Mugen Yin, Chuang Tang, Beisha Tan, Jun Xu, Xuan Liu, Jing Yu Mov Disord Regular Issue Articles BACKGROUND: Haploinsufficiency is widely accepted as the pathogenic mechanism of spastic paraplegia type 4 (SPG4). However, there are some cases that cannot be explained by reduced function of the spastin protein encoded by SPAST. OBJECTIVES: To identify the causative gene of autosomal dominant hereditary spastic paraplegia in three large Chinese families and explore the pathological mechanism of a spastin variant. METHODS: Three large Chinese hereditary spastic paraplegia families with a total of 247 individuals (67 patients) were investigated, of whom 59 members were recruited to the study. Genetic testing was performed to identify the causative gene. Western blotting and immunofluorescence were used to analyze the effects of the mutant proteins in vitro. RESULTS: In the three hereditary spastic paraplegia families, of whom three index cases were misdiagnosed as other types of neurological diseases, a novel c.985dupA (p.Met329Asnfs*3) variant in SPAST was identified and was shown to cosegregate with the phenotype in the three families. The c.985dupA mutation produced two truncated mutants (mutant M1 and M87 isoforms) that accumulated to a higher level than their wild‐type counterparts. Furthermore, the mutant M1 isoform heavily decorated the microtubules and rendered them resistant to depolymerization. In contrast, the mutant M87 isoform was diffusely localized in both the nucleus and the cytoplasm, could not decorate microtubules, and was not able to promote microtubule disassembly. CONCLUSIONS: SPAST mutations leading to premature stop codons do not always act through haploinsufficiency. The truncated spastin may damage the corticospinal tracts through an isoform‐specific toxic effect. John Wiley & Sons, Inc. 2021-12-20 2022-03 /pmc/articles/PMC9300132/ /pubmed/34927746 http://dx.doi.org/10.1002/mds.28885 Text en © 2021 The Authors. Movement Disorders published by Wiley Periodicals LLC on behalf of International Parkinson and Movement Disorder Society https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Regular Issue Articles
Chen, Rui
Du, Shiyue
Yao, Yanyi
Zhang, Lu
Luo, Junyu
Shen, Yinhua
Xu, Zhenping
Zeng, Xiaomei
Zhang, Luoying
Liu, Mugen
Yin, Chuang
Tang, Beisha
Tan, Jun
Xu, Xuan
Liu, Jing Yu
A Novel SPAST Mutation Results in Spastin Accumulation and Defects in Microtubule Dynamics
title A Novel SPAST Mutation Results in Spastin Accumulation and Defects in Microtubule Dynamics
title_full A Novel SPAST Mutation Results in Spastin Accumulation and Defects in Microtubule Dynamics
title_fullStr A Novel SPAST Mutation Results in Spastin Accumulation and Defects in Microtubule Dynamics
title_full_unstemmed A Novel SPAST Mutation Results in Spastin Accumulation and Defects in Microtubule Dynamics
title_short A Novel SPAST Mutation Results in Spastin Accumulation and Defects in Microtubule Dynamics
title_sort novel spast mutation results in spastin accumulation and defects in microtubule dynamics
topic Regular Issue Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9300132/
https://www.ncbi.nlm.nih.gov/pubmed/34927746
http://dx.doi.org/10.1002/mds.28885
work_keys_str_mv AT chenrui anovelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT dushiyue anovelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT yaoyanyi anovelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT zhanglu anovelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT luojunyu anovelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT shenyinhua anovelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT xuzhenping anovelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT zengxiaomei anovelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT zhangluoying anovelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT liumugen anovelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT yinchuang anovelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT tangbeisha anovelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT tanjun anovelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT xuxuan anovelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT liujingyu anovelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT chenrui novelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT dushiyue novelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT yaoyanyi novelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT zhanglu novelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT luojunyu novelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT shenyinhua novelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT xuzhenping novelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT zengxiaomei novelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT zhangluoying novelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT liumugen novelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT yinchuang novelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT tangbeisha novelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT tanjun novelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT xuxuan novelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics
AT liujingyu novelspastmutationresultsinspastinaccumulationanddefectsinmicrotubuledynamics