Cargando…

Alzheimer's brains show inter-related changes in RNA and lipid metabolism

Alzheimer's disease (AD) involves changes in both lipid and RNA metabolism, but it remained unknown if these differences associate with AD's cognition and/or post-mortem neuropathology indices. Here, we report RNA-sequencing evidence of inter-related associations between lipid processing,...

Descripción completa

Detalles Bibliográficos
Autores principales: Barbash, Shahar, Garfinkel, Benjamin P., Maoz, Rotem, Simchovitz, Alon, Nadorp, Bettina, Guffanti, Alessandro, Bennett, Estelle R., Nadeau, Courtney, Türk, Andreas, Paul, Lukas, Reda, Torsten, Li, Yan, Buchman, Aron S., Greenberg, David S., Seitz, Alexander, Bennett, David A., Giavalisco, Patrick, Soreq, Hermona
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Academic Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5560656/
https://www.ncbi.nlm.nih.gov/pubmed/28630030
http://dx.doi.org/10.1016/j.nbd.2017.06.008
_version_ 1783257696806371328
author Barbash, Shahar
Garfinkel, Benjamin P.
Maoz, Rotem
Simchovitz, Alon
Nadorp, Bettina
Guffanti, Alessandro
Bennett, Estelle R.
Nadeau, Courtney
Türk, Andreas
Paul, Lukas
Reda, Torsten
Li, Yan
Buchman, Aron S.
Greenberg, David S.
Seitz, Alexander
Bennett, David A.
Giavalisco, Patrick
Soreq, Hermona
author_facet Barbash, Shahar
Garfinkel, Benjamin P.
Maoz, Rotem
Simchovitz, Alon
Nadorp, Bettina
Guffanti, Alessandro
Bennett, Estelle R.
Nadeau, Courtney
Türk, Andreas
Paul, Lukas
Reda, Torsten
Li, Yan
Buchman, Aron S.
Greenberg, David S.
Seitz, Alexander
Bennett, David A.
Giavalisco, Patrick
Soreq, Hermona
author_sort Barbash, Shahar
collection PubMed
description Alzheimer's disease (AD) involves changes in both lipid and RNA metabolism, but it remained unknown if these differences associate with AD's cognition and/or post-mortem neuropathology indices. Here, we report RNA-sequencing evidence of inter-related associations between lipid processing, cognition level, and AD neuropathology. In two unrelated cohorts, we identified pathway-enriched facilitation of lipid processing and alternative splicing genes, including the neuronal-enriched NOVA1 and hnRNPA1. Specifically, this association emerged in temporal lobe tissue samples from donors where postmortem evidence demonstrated AD neuropathology, but who presented normal cognition proximate to death. The observed changes further associated with modified ATP synthesis and mitochondrial transcripts, indicating metabolic relevance; accordingly, mass-spectrometry-derived lipidomic profiles distinguished between individuals with and without cognitive impairment prior to death. In spite of the limited group sizes, tissues from persons with both cognitive impairment and AD pathology showed elevation in several drug-targeted genes of other brain, vascular and autoimmune disorders, accompanied by pathology-related increases in distinct lipid processing transcripts, and in the RNA metabolism genes hnRNPH2, TARDBP, CLP1 and EWSR1. To further detect 3′-polyadenylation variants, we employed multiple cDNA primer pairs. This identified variants that showed limited differences in scope and length between the tested cohorts, yet enabled superior clustering of demented and non-demented AD brains versus controls compared to total mRNA expression values. Our findings indicate inter-related cognition-associated differences in AD's lipid processing, alternative splicing and 3′-polyadenylation, calling for pursuing the underlying psychological and therapeutics implications.
format Online
Article
Text
id pubmed-5560656
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Academic Press
record_format MEDLINE/PubMed
spelling pubmed-55606562017-10-01 Alzheimer's brains show inter-related changes in RNA and lipid metabolism Barbash, Shahar Garfinkel, Benjamin P. Maoz, Rotem Simchovitz, Alon Nadorp, Bettina Guffanti, Alessandro Bennett, Estelle R. Nadeau, Courtney Türk, Andreas Paul, Lukas Reda, Torsten Li, Yan Buchman, Aron S. Greenberg, David S. Seitz, Alexander Bennett, David A. Giavalisco, Patrick Soreq, Hermona Neurobiol Dis Article Alzheimer's disease (AD) involves changes in both lipid and RNA metabolism, but it remained unknown if these differences associate with AD's cognition and/or post-mortem neuropathology indices. Here, we report RNA-sequencing evidence of inter-related associations between lipid processing, cognition level, and AD neuropathology. In two unrelated cohorts, we identified pathway-enriched facilitation of lipid processing and alternative splicing genes, including the neuronal-enriched NOVA1 and hnRNPA1. Specifically, this association emerged in temporal lobe tissue samples from donors where postmortem evidence demonstrated AD neuropathology, but who presented normal cognition proximate to death. The observed changes further associated with modified ATP synthesis and mitochondrial transcripts, indicating metabolic relevance; accordingly, mass-spectrometry-derived lipidomic profiles distinguished between individuals with and without cognitive impairment prior to death. In spite of the limited group sizes, tissues from persons with both cognitive impairment and AD pathology showed elevation in several drug-targeted genes of other brain, vascular and autoimmune disorders, accompanied by pathology-related increases in distinct lipid processing transcripts, and in the RNA metabolism genes hnRNPH2, TARDBP, CLP1 and EWSR1. To further detect 3′-polyadenylation variants, we employed multiple cDNA primer pairs. This identified variants that showed limited differences in scope and length between the tested cohorts, yet enabled superior clustering of demented and non-demented AD brains versus controls compared to total mRNA expression values. Our findings indicate inter-related cognition-associated differences in AD's lipid processing, alternative splicing and 3′-polyadenylation, calling for pursuing the underlying psychological and therapeutics implications. Academic Press 2017-10 /pmc/articles/PMC5560656/ /pubmed/28630030 http://dx.doi.org/10.1016/j.nbd.2017.06.008 Text en © 2017 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Barbash, Shahar
Garfinkel, Benjamin P.
Maoz, Rotem
Simchovitz, Alon
Nadorp, Bettina
Guffanti, Alessandro
Bennett, Estelle R.
Nadeau, Courtney
Türk, Andreas
Paul, Lukas
Reda, Torsten
Li, Yan
Buchman, Aron S.
Greenberg, David S.
Seitz, Alexander
Bennett, David A.
Giavalisco, Patrick
Soreq, Hermona
Alzheimer's brains show inter-related changes in RNA and lipid metabolism
title Alzheimer's brains show inter-related changes in RNA and lipid metabolism
title_full Alzheimer's brains show inter-related changes in RNA and lipid metabolism
title_fullStr Alzheimer's brains show inter-related changes in RNA and lipid metabolism
title_full_unstemmed Alzheimer's brains show inter-related changes in RNA and lipid metabolism
title_short Alzheimer's brains show inter-related changes in RNA and lipid metabolism
title_sort alzheimer's brains show inter-related changes in rna and lipid metabolism
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5560656/
https://www.ncbi.nlm.nih.gov/pubmed/28630030
http://dx.doi.org/10.1016/j.nbd.2017.06.008
work_keys_str_mv AT barbashshahar alzheimersbrainsshowinterrelatedchangesinrnaandlipidmetabolism
AT garfinkelbenjaminp alzheimersbrainsshowinterrelatedchangesinrnaandlipidmetabolism
AT maozrotem alzheimersbrainsshowinterrelatedchangesinrnaandlipidmetabolism
AT simchovitzalon alzheimersbrainsshowinterrelatedchangesinrnaandlipidmetabolism
AT nadorpbettina alzheimersbrainsshowinterrelatedchangesinrnaandlipidmetabolism
AT guffantialessandro alzheimersbrainsshowinterrelatedchangesinrnaandlipidmetabolism
AT bennettesteller alzheimersbrainsshowinterrelatedchangesinrnaandlipidmetabolism
AT nadeaucourtney alzheimersbrainsshowinterrelatedchangesinrnaandlipidmetabolism
AT turkandreas alzheimersbrainsshowinterrelatedchangesinrnaandlipidmetabolism
AT paullukas alzheimersbrainsshowinterrelatedchangesinrnaandlipidmetabolism
AT redatorsten alzheimersbrainsshowinterrelatedchangesinrnaandlipidmetabolism
AT liyan alzheimersbrainsshowinterrelatedchangesinrnaandlipidmetabolism
AT buchmanarons alzheimersbrainsshowinterrelatedchangesinrnaandlipidmetabolism
AT greenbergdavids alzheimersbrainsshowinterrelatedchangesinrnaandlipidmetabolism
AT seitzalexander alzheimersbrainsshowinterrelatedchangesinrnaandlipidmetabolism
AT bennettdavida alzheimersbrainsshowinterrelatedchangesinrnaandlipidmetabolism
AT giavaliscopatrick alzheimersbrainsshowinterrelatedchangesinrnaandlipidmetabolism
AT soreqhermona alzheimersbrainsshowinterrelatedchangesinrnaandlipidmetabolism