Database Commons
Database Commons

a catalog of worldwide biological databases

Database Profile

MiSynPat

General information

URL: http://misynpat.org
Full name: Mitochondrial Aminoacyl-tRNA Synthetases & Pathologies
Description: An integrated knowledge base linking clinical, genetic, and structural data for disease-causing mutations in human mitochondrial aminoacyl-tRNA synthetases.
Year founded: 2017
Last update:
Version:
Accessibility:
Accessible
Country/Region: France

Classification & Tag

Data type:
Data object:
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Keywords:

Contact information

University/Institution: University of Strasbourg
Address: Université de Strasbourg, CNRS, Architecture et Réactivité de l'ARN, Strasbourg, France
City:
Province/State:
Country/Region: France
Contact name (PI/Team): marie sissler
Contact email (PI/Helpdesk): m.sissler@ibmc-cnrs.unistra.fr

Publications

28608363
MiSynPat: An integrated knowledge base linking clinical, genetic, and structural data for disease-causing mutations in human mitochondrial aminoacyl-tRNA synthetases. [PMID: 28608363]
Moulinier L, Ripp R, Castillo G, Poch O, Sissler M.

Numerous mutations in each of the mitochondrial aminoacyl-tRNA synthetases (aaRSs) have been implicated in human diseases. The mutations are autosomal and recessive and lead mainly to neurological disorders, although with pleiotropic effects. The processes and interactions that drive the etiology of the disorders associated with mitochondrial aaRSs (mt-aaRSs) are far from understood. The complexity of the clinical, genetic, and structural data requires concerted, interdisciplinary efforts to understand the molecular biology of these disorders. Toward this goal, we designed MiSynPat, a comprehensive knowledge base together with an ergonomic Web server designed to organize and access all pertinent information (sequences, multiple sequence alignments, structures, disease descriptions, mutation characteristics, original literature) on the disease-linked human mt-aaRSs. With MiSynPat, a user can also evaluate the impact of a possible mutation on sequence-conservation-structure in order to foster the links between basic and clinical researchers and to facilitate future diagnosis. The proposed integrated view, coupled with research on disease-related mt-aaRSs, will help to reveal new functions for these enzymes and to open new vistas in the molecular biology of the cell. The purpose of MiSynPat, freely available at http://misynpat.org, is to constitute a reference and a converging resource for scientists and clinicians.

Hum Mutat. 2017:38(10) | 36 Citations (from Europe PMC, 2025-12-13)

Ranking

All databases:
2648/6895 (61.61%)
Health and medicine:
665/1738 (61.795%)
Genotype phenotype and variation:
390/1005 (61.294%)
2648
Total Rank
34
Citations
4.25
z-index

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Record metadata

Created on: 2018-01-28
Curated by:
Lina Ma [2018-04-28]
huma shireen [2018-04-10]
Yang Zhang [2018-01-28]