Please visit the 'Related items' tab within the profile page to explore associated studies in more detail.
SEEK ID: http://lmmeisd-2.srv.mwn.de/people/10
Location: Germany
ORCID: Not specified
Joined: 18th Dec 2024
Expertise: Not specified
Tools: Not specified
Related items
This project serves as a centralized repository for omics datasets published by research groups within the SyNergy Cluster. It encompasses investigations such as proteomics and transcriptomics, which are further divided into individual studies led by SyNergy members. Each study is linked to relevant publications, assays and data files (with links to external repositories).
To explore investigations and their associated studies in more detail, please visit the 'Related items' tab on the Project ...
Public web page: Not specified
Organisms: Mus musculus, Rattus norvegicus, Homo sapiens, Macaca mulatta, Sus scrofa, Danio rerio
This project serves as a centralized repository for unpublished omics datasets from ongoing research led by SyNergy group leaders. It includes sample metadata and assay information for studies currently in progress, grouped under investigations such as proteomics and transcriptomics. The project aims to facilitate collaboration and data management within the cluster while maintaining confidentiality for unpublished work.
To explore investigations and their associated studies in more detail, please ...
Public web page: Not specified
Organisms: Mus musculus, Rattus norvegicus, Homo sapiens, Macaca mulatta, Sus scrofa, Danio rerio
Progranulin (PGRN) haploinsufficiency is a major risk factor for frontotemporal lobar degeneration with TAR DNA-binding protein 43 (TDP-43) pathology (FTLD-GRN). Multiple therapeutic strategies are in clinical development to restore PGRN in the CNS, including gene therapy. However, a limitation of current gene therapy approaches aimed to alleviate FTLD-associated pathologies may be their inefficient brain exposure and biodistribution. We therefore developed an adeno-associated virus (AAV) targeting ...
Submitter: Aditi Methi
Investigation: Transcriptomics (Published)
Snapshots: No snapshots
Amyotrophic lateral sclerosis (ALS) is a debilitating motor neuron disease and lacks effective disease-modifying treatments. This study utilizes a comprehensive multiomic approach to investigate the early and sex-specific molecular mechanisms underlying ALS. By analyzing the prefrontal cortex of 51 patients with sporadic ALS and 50 control subjects, alongside four transgenic mouse models (C9orf72-, SOD1-, TDP-43-, and FUS-ALS), we have uncovered significant molecular alterations associated with ...
Submitter: Aditi Methi
Investigation: Proteomics (Published)
Assays: Phosphoproteomics / Bottom-up proteomics (mouse), Shotgun proteomics (human, mouse)
Snapshots: No snapshots
Amyotrophic lateral sclerosis (ALS) is a debilitating motor neuron disease and lacks effective disease-modifying treatments. This study utilizes a comprehensive multiomic approach to investigate the early and sex-specific molecular mechanisms underlying ALS. By analyzing the prefrontal cortex of 51 patients with sporadic ALS and 50 control subjects, alongside four transgenic mouse models (C9orf72-, SOD1-, TDP-43-, and FUS-ALS), we have uncovered significant molecular alterations associated with ...
Submitter: Aditi Methi
Investigation: Transcriptomics (Published)
Assays: Expression profiling: Bulk RNA-seq (human), Expression profiling: Bulk RNA-seq (mouse), Expression profiling: small RNA-seq (human), Expression profiling: small RNA-seq (mouse)
Snapshots: No snapshots
Ubiquilin-2 (UBQLN2) is a ubiquitin-binding protein that shuttles ubiquitinated proteins to proteasomal and autophagic degradation. UBQLN2 mutations are genetically linked to the neurodegenerative disorders amyotrophic lateral sclerosis and frontotemporal dementia (ALS/FTD). However, it remains elusive how UBQLN2 mutations cause ALS/FTD. Here, we systematically examined proteomic and transcriptomic changes in patient-derived lymphoblasts and CRISPR/Cas9-engineered HeLa cells carrying ALS/FTD ...
Snapshots: No snapshots
Hexanucleotide repeat expansions within C9orf72 are a frequent cause of amyotrophic lateral sclerosis and frontotemporal dementia. Haploinsufficiency leading to reduced C9orf72 protein contributes to disease pathogenesis. C9orf72 binds SMCR8 to form a robust complex that regulates small GTPases, lysosomal integrity, and autophagy. In contrast to this functional understanding, we know far less about the assembly and turnover of the C9orf72-SMCR8 complex. Loss of either subunit causes the concurrent ...
Snapshots: No snapshots
Abstract (Expand)
Authors: Lucas Caldi Gomes, Sonja Hänzelmann, Fabian Hausmann, Robin Khatri, Sergio Oller, Mojan Parvaz, Laura Tzeplaeff, Laura Pasetto, Marie Gebelin, Melanie Ebbing, Constantin Holzapfel, Stefano Fabrizio Columbro, Serena Scozzari, Johanna Knöferle, Isabell Cordts, Antonia F Demleitner, Marcus Deschauer, Claudia Dufke, Marc Sturm, Qihui Zhou, Pavol Zelina, Emma Sudria-Lopez, Tobias B Haack, Sebastian Streb, Magdalena Kuzma-Kozakiewicz, Dieter Edbauer, R Jeroen Pasterkamp, Endre Laczko, Hubert Rehrauer, Ralph Schlapbach, Christine Carapito, Valentina Bonetto, Stefan Bonn, Paul Lingor
Date Published: 1st Jul 2024
Publication Type: Journal
Abstract (Expand)
Authors: Marvin Reich, Matthew J Simon, Beate Polke, Iñaki Paris, Georg Werner, Christian Schrader, Lena Spieth, Sonnet S Davis, Sophie Robinson, Gabrielly Lunkes de Melo, Lennart Schlaphoff, Katrin Buschmann, Stefan Berghoff, Todd Logan, Brigitte Nuscher, Lis de Weerd, Dieter Edbauer, Mikael Simons, Jung H Suh, Thomas Sandmann, Mihalis S Kariolis, Sarah L DeVos, Joseph W Lewcock, Dominik Paquet, Anja Capell, Gilbert Di Paolo, Christian Haass
Date Published: 5th Jun 2024
Publication Type: Journal
PubMed ID: 38838131
DOI: 10.1126/scitranslmed.adj7308
Citation: Science translational medicine,16(750):eadj7308
Abstract (Expand)
Authors: J. Julg, D. Edbauer, C. Behrends
Date Published: 3rd Aug 2023
Publication Type: Journal
PubMed ID: 37317656
Citation: EMBO Rep. 2023 Aug 3;24(8):e55895. doi: 10.15252/embr.202255895. Epub 2023 Jun 15.
Abstract (Expand)
Authors: L. Strohm, Z. Hu, Y. Suk, A. Ruhmkorf, E. Sternburg, V. Gattringer, H. Riemenschneider, R. Berutti, E. Graf, J. H. Weishaupt, M. S. Brill, A. B. Harbauer, D. Dormann, J. Dengjel, D. Edbauer, C. Behrends
Date Published: 1st Jul 2022
Publication Type: Journal
PubMed ID: 35777956
Citation: Life Sci Alliance. 2022 Jul 1;5(11):e202101327. doi: 10.26508/lsa.202101327. Print 2022 Nov.