Transcriptomic profiling of Parkinson's disease brains reveals disease stage specific gene expression changes

被引:20
|
作者
Cappelletti, Chiara [1 ,2 ,3 ]
Henriksen, Sandra Pilar [3 ]
Geut, Hanneke [4 ,5 ]
Rozemuller, Annemieke J. M. [6 ]
van de Berg, Wilma D. J. [4 ]
Pihlstrom, Lasse [3 ]
Toft, Mathias [3 ,7 ]
机构
[1] OsloMet Oslo Metropolitan Univ, Fac Technol Art & Design, Dept Mech Elect & Chem Engn, Oslo, Norway
[2] Oslo Univ Hosp, Dept Res Innovat & Educ, Oslo, Norway
[3] Oslo Univ Hosp, Dept Neurol, Oslo, Norway
[4] Vrije Univ, Dept Anat & Neurosci, Sect Clin Neuroanat & Biobanking, Amsterdam UMC, Amsterdam, Netherlands
[5] Netherlands Inst Neurosci, Netherlands Brain Bank, Amsterdam, Netherlands
[6] Vrije Univ, Dept Pathol, Amsterdam UMC, Amsterdam Neurosci, Amsterdam, Netherlands
[7] Univ Oslo, Inst Clin Med, Oslo, Norway
关键词
Parkinson's disease; Braak Lewy body stage; Human frontal cortex; Neurodegeneration; RNA-sequencing; Gene expression; INCIDENTAL LEWY BODY; CLINICAL DIAGNOSTIC-CRITERIA; GENOME-WIDE ASSOCIATION; MOLECULAR-CHANGES; RISK LOCI; RNA; METAANALYSIS; PROTEIN; IDENTIFICATION; VITAMIN-B-6;
D O I
10.1007/s00401-023-02597-7
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Parkinson & PRIME;s disease (PD) is a progressive neurodegenerative disorder characterized by both motor and non-motor symptoms. Aggravation of symptoms is mirrored by accumulation of protein aggregates mainly composed by alpha-synuclein in different brain regions, called Lewy bodies (LB). Previous studies have identified several molecular mechanisms as autophagy and inflammation playing a role in PD pathogenesis. Increased insights into mechanisms involved in early disease stages and driving the progression of the LB pathology are required for the development of disease-modifying strategies. Here, we aimed to elucidate disease stage-specific transcriptomic changes in brain tissue of well-characterized PD and control donors. We collected frontal cortex samples from 84 donors and sequenced both the coding and non-coding RNAs. We categorized our samples into groups based on their degree of LB pathology aiming to recapitulate a central aspect of disease progression. Using an analytical pipeline that corrected for sex, age at death, RNA quality, cell composition and unknown sources of variation, we found major disease stage-specific transcriptomic changes. Gene expression changes were most pronounced in donors at the disease stage when microscopic LB changes first occur in the sampled brain region. Additionally, we identified disease stage-specific enrichment of brain specific pathways and immune mechanisms. On the contrary, we showed that mitochondrial mechanisms are enriched throughout the disease course. Our data-driven approach also suggests a role for several poorly characterized lncRNAs in disease development and progression of PD. Finally, by combining genetic and epigenetic information, we highlighted two genes (MAP4K4 and PHYHIP) as candidate genes for future functional studies. Together our results indicate that transcriptomic dysregulation and associated functional changes are highly disease stage-specific, which has major implications for the study of neurodegenerative disorders.
引用
收藏
页码:227 / 244
页数:18
相关论文
共 50 条
  • [41] Disease-specific gene expression profiling in multiple models of lung disease
    Lewis, Christina C.
    Yang, Jean Yee Hwa
    Huang, Xiaozhu
    Banerjee, Suman K.
    Blackburn, Michael R.
    Baluk, Peter
    McDonald, Donald M.
    Blackwell, Timothy S.
    Nagabhushanam, Vijaya
    Peters, Wendy
    Voehringer, David
    Erle, David J.
    AMERICAN JOURNAL OF RESPIRATORY AND CRITICAL CARE MEDICINE, 2008, 177 (04) : 376 - 387
  • [42] Transcriptomic metaanalyses of autistic brains reveals shared gene expression and biological pathway abnormalities with cancer
    Fores-Martos, Jaume
    Catala-Lopez, Ferran
    Sanchez-Valle, Jon
    Ibanez, Kristina
    Tejero, Hector
    Palma-Gudiel, Helena
    Climent, Joan
    Pancaldi, Vera
    Fananas, Lourdes
    Arango, Celso
    Parellada, Mara
    Baudot, Anais
    Vogt, Daniel
    Rubenstein, John L.
    Valencia, Alfonso
    Tabares-Seisdedos, Rafael
    MOLECULAR AUTISM, 2019, 10 (1)
  • [43] RETRACTED: Gene expression profiling analysis of the putamen for the investigation of compensatory mechanisms in Parkinson's disease (Retracted Article)
    Gao, Lianbo
    Gao, Honghua
    Zhou, Huan
    Xu, Yanyuan
    BMC NEUROLOGY, 2013, 13
  • [44] Transcriptomic metaanalyses of autistic brains reveals shared gene expression and biological pathway abnormalities with cancer
    Jaume Forés-Martos
    Ferrán Catalá-López
    Jon Sánchez-Valle
    Kristina Ibáñez
    Héctor Tejero
    Helena Palma-Gudiel
    Joan Climent
    Vera Pancaldi
    Lourdes Fañanás
    Celso Arango
    Mara Parellada
    Anaïs Baudot
    Daniel Vogt
    John L. Rubenstein
    Alfonso Valencia
    Rafael Tabarés-Seisdedos
    Molecular Autism, 10
  • [45] Disease Duration Influences Gene Expression in Neuromelanin-Positive Cells From Parkinson's Disease Patients
    Tiklova, Katarina
    Gillberg, Linda
    Volakakis, Nikolaos
    Lunden-Miguel, Hilda
    Dahl, Lina
    Serrano, Geidy E.
    Adler, Charles H.
    Beach, Thomas G.
    Perlmann, Thomas
    FRONTIERS IN MOLECULAR NEUROSCIENCE, 2021, 14
  • [46] Convergence of miRNA Expression Profiling, α-Synuclein Interacton and GWAS in Parkinson's Disease
    Martins, Madalena
    Rosa, Alexandra
    Guedes, Leonor C.
    Fonseca, Benedita V.
    Gotovac, Kristina
    Violante, Sara
    Mestre, Tiago
    Coelho, Miguel
    Rosa, Mario M.
    Martin, Eden R.
    Vance, Jeffery M.
    Outeiro, Tiago F.
    Wang, Liyong
    Borovecki, Fran
    Ferreira, Joaquim J.
    Oliveira, Sofia A.
    PLOS ONE, 2011, 6 (10):
  • [47] Global microRNA Expression Profiling of Caenorhabditis elegans Parkinson's Disease Models
    Suvi Asikainen
    Martina Rudgalvyte
    Liisa Heikkinen
    Kristiina Louhiranta
    Merja Lakso
    Garry Wong
    Richard Nass
    Journal of Molecular Neuroscience, 2010, 41 : 210 - 218
  • [48] RNA sequencing of whole blood reveals early alterations in immune cells and gene expression in Parkinson's disease
    Craig, David W.
    Hutchins, Elizabeth
    Violich, Ivo
    Alsop, Eric
    Gibbs, J. Raphael
    Levy, Shawn
    Robison, Madison
    Prasad, Nripesh
    Foroud, Tatiana
    Crawford, Karen L.
    Toga, Arthur W.
    Whitsett, Timothy G.
    Kim, Seungchan
    Casey, Bradford
    Reimer, Alyssa
    Hutten, Samantha J.
    Frasier, Mark
    Kern, Fabian
    Fehlman, Tobias
    Keller, Andreas
    Cookson, Mark R.
    Van Keuren-Jensen, Kendall
    NATURE AGING, 2021, 1 (08): : 734 - +
  • [49] Moving beyond neurons: the role of cell type-specific gene regulation in Parkinson's disease heritability
    Reynolds, Regina H.
    Botia, Juan
    Nalls, Mike A.
    Hardy, John
    Taliun, Sarah A. Gagliano
    Ryten, Mina
    Noyce, Alastair J.
    Nicolas, Aude
    Cookson, Mark R.
    Bandres-Ciga, Sara
    Gibbs, J. Raphael
    Hernandez, Dena G.
    Singleton, Andrew B.
    Reed, Xylena
    Leonard, Hampton
    Blauwendraat, Cornelis
    Faghri, Faraz
    Bras, Jose
    Guerreiro, Rita
    Tucci, Arianna
    Kia, Demis A.
    Houlden, Henry
    Plun-Favreau, Helene
    Mok, Kin Y.
    Wood, Nicholas W.
    Lovering, Ruth
    R'Bibo, Lea
    Rizig, Mie
    Chelban, Viorica
    Trabzuni, Daniah
    Tan, Manuela
    Morris, Huw R.
    Middlehurst, Ben
    Quinn, John
    Billingsley, Kimberley
    Holmans, Peter
    Kinghorn, Kerri J.
    Lewis, Patrick
    Escott-Price, Valentina
    Williams, Nigel
    Foltynie, Thomas
    Brice, Alexis
    Danjou, Fabrice
    Lesage, Suzanne
    Corvol, Jean-Christophe
    Martinez, Maria
    Giri, Anamika
    Schulte, Claudia
    Brockmann, Kathrin
    Simon-Sanchez, Javier
    NPJ PARKINSONS DISEASE, 2019, 5 (1)
  • [50] Metabolic profiling of Alzheimer's disease brains
    Inoue, Koichi
    Tsutsui, Haruhito
    Akatsu, Hiroyasu
    Hashizume, Yoshio
    Matsukawa, Noriyuki
    Yamamoto, Takayuki
    Toyo'oka, Toshimasa
    SCIENTIFIC REPORTS, 2013, 3