GM604 regulates developmental neurogenesis pathways and the expression of genes associated with amyotrophic lateral sclerosis

Abstract Background Amyotrophic lateral sclerosis (ALS) is currently an incurable disease without highly effective pharmacological treatments. The peptide drug GM604 (GM6 or Alirinetide) was developed as a candidate ALS therapy, which has demonstrated safety and good drug-like properties with a favo...

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Main Authors: William R. Swindell, Krzysztof Bojanowski, Mark S. Kindy, Raymond M. W. Chau, Dorothy Ko
Format: Article
Language:English
Published: BMC 2018-12-01
Series:Translational Neurodegeneration
Subjects:
Online Access:http://link.springer.com/article/10.1186/s40035-018-0135-7
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spelling doaj-538aad7cee574b62a1b8c48f691a3e592020-11-25T01:21:17ZengBMCTranslational Neurodegeneration2047-91582018-12-017112410.1186/s40035-018-0135-7GM604 regulates developmental neurogenesis pathways and the expression of genes associated with amyotrophic lateral sclerosisWilliam R. Swindell0Krzysztof Bojanowski1Mark S. Kindy2Raymond M. W. Chau3Dorothy Ko4Heritage College of Osteopathic Medicine, Ohio UniversitySunny BioDiscovery, IncDepartment of Pharmaceutical Sciences, College of Pharmacy, University of South FloridaGenervon Biopharmaceuticals LLCGenervon Biopharmaceuticals LLCAbstract Background Amyotrophic lateral sclerosis (ALS) is currently an incurable disease without highly effective pharmacological treatments. The peptide drug GM604 (GM6 or Alirinetide) was developed as a candidate ALS therapy, which has demonstrated safety and good drug-like properties with a favorable pharmacokinetic profile. GM6 is hypothesized to bolster neuron survival through the multi-target regulation of developmental pathways, but mechanisms of action are not fully understood. Methods This study used RNA-seq to evaluate transcriptome responses in SH-SY5Y neuroblastoma cells following GM6 treatment (6, 24 and 48 h). Results We identified 2867 protein-coding genes with expression significantly altered by GM6 (FDR < 0.10). Early (6 h) responses included up-regulation of Notch and hedgehog signaling components, with increased expression of developmental genes mediating neurogenesis and axon growth. Prolonged GM6 treatment (24 and 48 h) altered the expression of genes contributing to cell adhesion and the extracellular matrix. GM6 further down-regulated the expression of genes associated with mitochondria, inflammatory responses, mRNA processing and chromatin organization. GM6-increased genes were located near GC-rich motifs interacting with C2H2 zinc finger transcription factors, whereas GM6-decreased genes were located near AT-rich motifs associated with helix-turn-helix homeodomain factors. Such motifs interacted with a diverse network of transcription factors encoded by GM6-regulated genes (STAT3, HOXD11, HES7, GLI1). We identified 77 ALS-associated genes with expression significantly altered by GM6 treatment (FDR < 0.10), which were known to function in neurogenesis, axon guidance and the intrinsic apoptosis pathway. Conclusions Our findings support the hypothesis that GM6 acts through developmental-stage pathways to influence neuron survival. Gene expression responses were consistent with neurotrophic effects, ECM modulation, and activation of the Notch and hedgehog neurodevelopmental pathways. This multifaceted mechanism of action is unique among existing ALS drug candidates and may be applicable to multiple neurodegenerative diseases.http://link.springer.com/article/10.1186/s40035-018-0135-7Alzheimer’s diseaseAmyotrophic lateral sclerosisExtracellular matrixHedgehogHuntington’s diseaseNeurodegenerative disease
collection DOAJ
language English
format Article
sources DOAJ
author William R. Swindell
Krzysztof Bojanowski
Mark S. Kindy
Raymond M. W. Chau
Dorothy Ko
spellingShingle William R. Swindell
Krzysztof Bojanowski
Mark S. Kindy
Raymond M. W. Chau
Dorothy Ko
GM604 regulates developmental neurogenesis pathways and the expression of genes associated with amyotrophic lateral sclerosis
Translational Neurodegeneration
Alzheimer’s disease
Amyotrophic lateral sclerosis
Extracellular matrix
Hedgehog
Huntington’s disease
Neurodegenerative disease
author_facet William R. Swindell
Krzysztof Bojanowski
Mark S. Kindy
Raymond M. W. Chau
Dorothy Ko
author_sort William R. Swindell
title GM604 regulates developmental neurogenesis pathways and the expression of genes associated with amyotrophic lateral sclerosis
title_short GM604 regulates developmental neurogenesis pathways and the expression of genes associated with amyotrophic lateral sclerosis
title_full GM604 regulates developmental neurogenesis pathways and the expression of genes associated with amyotrophic lateral sclerosis
title_fullStr GM604 regulates developmental neurogenesis pathways and the expression of genes associated with amyotrophic lateral sclerosis
title_full_unstemmed GM604 regulates developmental neurogenesis pathways and the expression of genes associated with amyotrophic lateral sclerosis
title_sort gm604 regulates developmental neurogenesis pathways and the expression of genes associated with amyotrophic lateral sclerosis
publisher BMC
series Translational Neurodegeneration
issn 2047-9158
publishDate 2018-12-01
description Abstract Background Amyotrophic lateral sclerosis (ALS) is currently an incurable disease without highly effective pharmacological treatments. The peptide drug GM604 (GM6 or Alirinetide) was developed as a candidate ALS therapy, which has demonstrated safety and good drug-like properties with a favorable pharmacokinetic profile. GM6 is hypothesized to bolster neuron survival through the multi-target regulation of developmental pathways, but mechanisms of action are not fully understood. Methods This study used RNA-seq to evaluate transcriptome responses in SH-SY5Y neuroblastoma cells following GM6 treatment (6, 24 and 48 h). Results We identified 2867 protein-coding genes with expression significantly altered by GM6 (FDR < 0.10). Early (6 h) responses included up-regulation of Notch and hedgehog signaling components, with increased expression of developmental genes mediating neurogenesis and axon growth. Prolonged GM6 treatment (24 and 48 h) altered the expression of genes contributing to cell adhesion and the extracellular matrix. GM6 further down-regulated the expression of genes associated with mitochondria, inflammatory responses, mRNA processing and chromatin organization. GM6-increased genes were located near GC-rich motifs interacting with C2H2 zinc finger transcription factors, whereas GM6-decreased genes were located near AT-rich motifs associated with helix-turn-helix homeodomain factors. Such motifs interacted with a diverse network of transcription factors encoded by GM6-regulated genes (STAT3, HOXD11, HES7, GLI1). We identified 77 ALS-associated genes with expression significantly altered by GM6 treatment (FDR < 0.10), which were known to function in neurogenesis, axon guidance and the intrinsic apoptosis pathway. Conclusions Our findings support the hypothesis that GM6 acts through developmental-stage pathways to influence neuron survival. Gene expression responses were consistent with neurotrophic effects, ECM modulation, and activation of the Notch and hedgehog neurodevelopmental pathways. This multifaceted mechanism of action is unique among existing ALS drug candidates and may be applicable to multiple neurodegenerative diseases.
topic Alzheimer’s disease
Amyotrophic lateral sclerosis
Extracellular matrix
Hedgehog
Huntington’s disease
Neurodegenerative disease
url http://link.springer.com/article/10.1186/s40035-018-0135-7
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