The function of proteasomes in extracellular space is still largely unknown. The extracellular proteasome-osteopontin circuit has recently been hypothesized to be part of the inflammatory machinery regulating relapse/remission phase alternation in multiple sclerosis. However, it is still unclear what dynamics there are between the different elements of the circuit, what the role of proteasome isoforms is, and whether these inflammatory circuit dynamics are associated with the clinical severity of multiple sclerosis. To shed light on these aspects of this novel inflammatory circuit, we integrated in vitro proteasome isoform data, cell chemotaxis cell culture data, and clinical data of multiple sclerosis cohorts in a coherent computational inference framework. Thereby, we modeled extracellular osteopontin-proteasome circuit dynamics during relapse/remission alternation in multiple sclerosis. Applying this computational framework to a longitudinal study on single multiple sclerosis patients suggests a complex interaction between extracellular proteasome isoforms and osteopontin with potential clinical implications.

Untangling Extracellular Proteasome-Osteopontin Circuit Dynamics in Multiple Sclerosis

Dianzani, Chiara
First
;
2019-01-01

Abstract

The function of proteasomes in extracellular space is still largely unknown. The extracellular proteasome-osteopontin circuit has recently been hypothesized to be part of the inflammatory machinery regulating relapse/remission phase alternation in multiple sclerosis. However, it is still unclear what dynamics there are between the different elements of the circuit, what the role of proteasome isoforms is, and whether these inflammatory circuit dynamics are associated with the clinical severity of multiple sclerosis. To shed light on these aspects of this novel inflammatory circuit, we integrated in vitro proteasome isoform data, cell chemotaxis cell culture data, and clinical data of multiple sclerosis cohorts in a coherent computational inference framework. Thereby, we modeled extracellular osteopontin-proteasome circuit dynamics during relapse/remission alternation in multiple sclerosis. Applying this computational framework to a longitudinal study on single multiple sclerosis patients suggests a complex interaction between extracellular proteasome isoforms and osteopontin with potential clinical implications.
2019
Inglese
Esperti anonimi
8
3
262
262
22
chemotaxis; computational modelling; immunoproteasome; system biology; Central Nervous System; Chemotaxis; Extracellular Space; Human Umbilical Vein Endothelial Cells; Humans; Leukocytes; Models, Biological; Multiple Sclerosis; Osteopontin; Proteasome Endopeptidase Complex; Protein Isoforms; Recurrence; Remission Induction; Thrombin
GERMANIA
REGNO UNITO DI GRAN BRETAGNA
1 – prodotto con file in versione Open Access (allegherò il file al passo 6 - Carica)
262
10
Dianzani, Chiara; Vecchio, Domizia; Clemente, Nausicaa; Chiocchetti, Annalisa; Martinelli Boneschi, Filippo; Galimberti, Daniela; Dianzani, Umberto; C...espandi
info:eu-repo/semantics/article
open
03-CONTRIBUTO IN RIVISTA::03A-Articolo su Rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/1740151
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