» Articles » PMID: 22632443

Impaired Proteasome Function in Sporadic Amyotrophic Lateral Sclerosis

Overview
Publisher Informa Healthcare
Specialty Neurology
Date 2012 May 29
PMID 22632443
Citations 36
Authors
Affiliations
Soon will be listed here.
Abstract

Abstract The ubiquitin-proteasome system, important for maintaining protein quality control, is compromised in experimental models of familial ALS. The objective of this study was to determine if proteasome function is impaired in sporadic ALS. Proteasomal activities and subunit composition were evaluated in homogenates of spinal cord samples obtained at autopsy from sporadic ALS and non-neurological control cases, compared to cerebellum as a clinically spared tissue. The level of 20S α structural proteasome subunits was assessed in motor neurons by immunohistochemistry. Catalysis of peptide substrates of the three major proteasomal activities was substantially reduced in ALS thoracic spinal cord, but not in cerebellum, accompanied by alterations in the constitutive proteasome machinery. Chymotrypsin-like activity was decreased to 60% and 65% of control in ventral and dorsal spinal cord, respectively, concomitant with reduction in the β5 subunit with this catalytic activity. Caspase- and trypsin-like activities were reduced to a similar extent (46% - 68% of control). Proteasome levels, although generally maintained, appeared reduced specifically in motor neurons by immunolabelling. In conclusion, there are commonalities of findings in sporadic ALS patients and presymptomatic SOD1-G93A transgenic mice and these implicate inadequate proteasome function in the pathogenesis of both familial and sporadic ALS.

Citing Articles

NDRG1 upregulation by ubiquitin proteasome system dysfunction aggravates neurodegeneration.

Hoshino T, Mukai A, Yamashita H, Misawa H, Urushitani M, Tashiro Y Mol Brain. 2024; 17(1):77.

PMID: 39444004 PMC: 11515609. DOI: 10.1186/s13041-024-01150-1.


PSMC5 insufficiency and P320R mutation impair proteasome function.

Yu Z, Carmichael J, Collins G, DAgostino M, Lessard M, Firth H Hum Mol Genet. 2024; 33(17):1506-1523.

PMID: 38776958 PMC: 11336065. DOI: 10.1093/hmg/ddae085.


Identification of molecular signatures defines the differential proteostasis response in induced spinal and cranial motor neurons.

Fiore A, Maity S, Jeffery L, An D, Rendleman J, Iannitelli D Cell Rep. 2024; 43(3):113885.

PMID: 38457337 PMC: 11018139. DOI: 10.1016/j.celrep.2024.113885.


Muscle Involvement in Amyotrophic Lateral Sclerosis: Understanding the Pathogenesis and Advancing Therapeutics.

Duranti E, Villa C Biomolecules. 2023; 13(11).

PMID: 38002264 PMC: 10669302. DOI: 10.3390/biom13111582.


Obatoclax Rescues FUS-ALS Phenotypes in iPSC-Derived Neurons by Inducing Autophagy.

Castillo Bautista C, Eismann K, Gentzel M, Pelucchi S, Mertens J, Walters H Cells. 2023; 12(18).

PMID: 37759469 PMC: 10527391. DOI: 10.3390/cells12182247.