TY - JOUR A1 - Ahmed, Zeeshan A1 - Zeeshan, Saman A1 - Huber, Claudia A1 - Hensel, Michael A1 - Schomburg, Dietmar A1 - Münch, Richard A1 - Eylert, Eva A1 - Eisenreich, Wolfgang A1 - Dandekar, Thomas T1 - ‘Isotopo’ a database application for facile analysis and management of mass isotopomer data JF - Database N2 - The composition of stable-isotope labelled isotopologues/isotopomers in metabolic products can be measured by mass spectrometry and supports the analysis of pathways and fluxes. As a prerequisite, the original mass spectra have to be processed, managed and stored to rapidly calculate, analyse and compare isotopomer enrichments to study, for instance, bacterial metabolism in infection. For such applications, we provide here the database application ‘Isotopo’. This software package includes (i) a database to store and process isotopomer data, (ii) a parser to upload and translate different data formats for such data and (iii) an improved application to process and convert signal intensities from mass spectra of \(^{13}C\)-labelled metabolites such as tertbutyldimethylsilyl-derivatives of amino acids. Relative mass intensities and isotopomer distributions are calculated applying a partial least square method with iterative refinement for high precision data. The data output includes formats such as graphs for overall enrichments in amino acids. The package is user-friendly for easy and robust data management of multiple experiments. KW - stable-isotope Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-120102 VL - 2014 IS - bau077 ER - TY - JOUR A1 - Dandekar, Thomas A1 - Ahmed, Zeeshan A1 - Saman, Zeeshan A1 - Huber, Claudia A1 - Hensel, Michael A1 - Schomburg, Dietmar A1 - Münch, Richard A1 - Eisenreich, Wolfgang T1 - Software LS-MIDA for efficient mass isotopomer distribution analysis in metabolic modelling JF - BMC Bioinformatics N2 - Background The knowledge of metabolic pathways and fluxes is important to understand the adaptation of organisms to their biotic and abiotic environment. The specific distribution of stable isotope labelled precursors into metabolic products can be taken as fingerprints of the metabolic events and dynamics through the metabolic networks. An open-source software is required that easily and rapidly calculates from mass spectra of labelled metabolites, derivatives and their fragments global isotope excess and isotopomer distribution. Results The open-source software “Least Square Mass Isotopomer Analyzer” (LS-MIDA) is presented that processes experimental mass spectrometry (MS) data on the basis of metabolite information such as the number of atoms in the compound, mass to charge ratio (m/e or m/z) values of the compounds and fragments under study, and the experimental relative MS intensities reflecting the enrichments of isotopomers in 13C- or 15 N-labelled compounds, in comparison to the natural abundances in the unlabelled molecules. The software uses Brauman’s least square method of linear regression. As a result, global isotope enrichments of the metabolite or fragment under study and the molar abundances of each isotopomer are obtained and displayed. Conclusions The new software provides an open-source platform that easily and rapidly converts experimental MS patterns of labelled metabolites into isotopomer enrichments that are the basis for subsequent observation-driven analysis of pathways and fluxes, as well as for model-driven metabolic flux calculations. KW - LS-MIDA Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-95882 UR - http://www.biomedcentral.com/1471-2105/14/218 ER - TY - JOUR A1 - Ahmed, Zeeshan A1 - Zeeshan, Saman A1 - Dandekar, Thomas T1 - Mining biomedical images towards valuable information retrieval in biomedical and life sciences JF - Database - The Journal of Biological Databases and Curation N2 - Biomedical images are helpful sources for the scientists and practitioners in drawing significant hypotheses, exemplifying approaches and describing experimental results in published biomedical literature. In last decades, there has been an enormous increase in the amount of heterogeneous biomedical image production and publication, which results in a need for bioimaging platforms for feature extraction and analysis of text and content in biomedical images to take advantage in implementing effective information retrieval systems. In this review, we summarize technologies related to data mining of figures. We describe and compare the potential of different approaches in terms of their developmental aspects, used methodologies, produced results, achieved accuracies and limitations. Our comparative conclusions include current challenges for bioimaging software with selective image mining, embedded text extraction and processing of complex natural language queries. KW - humans KW - software KW - image processing KW - animals KW - computer-assisted KW - data mining/methods KW - natural language processing Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-162697 VL - 2016 ER - TY - THES A1 - Zeeshan [geb. Majeed], Saman T1 - Implementation of Bioinformatics Methods for miRNA and Metabolic Modelling T1 - Die Umsetzung der Bioinformatik-Methoden für miRNA-und der Metabolischen Modellierung N2 - Dynamic interactions and their changes are at the forefront of current research in bioinformatics and systems biology. This thesis focusses on two particular dynamic aspects of cellular adaptation: miRNA and metabolites. miRNAs have an established role in hematopoiesis and megakaryocytopoiesis, and platelet miRNAs have potential as tools for understanding basic mechanisms of platelet function. The thesis highlights the possible role of miRNAs in regulating protein translation in platelet lifespan with relevance to platelet apoptosis and identifying involved pathways and potential key regulatory molecules. Furthermore, corresponding miRNA/target mRNAs in murine platelets are identified. Moreover, key miRNAs involved in aortic aneurysm are predicted by similar techniques. The clinical relevance of miRNAs as biomarkers, targets, resulting later translational therapeutics, and tissue specific restrictors of genes expression in cardiovascular diseases is also discussed. In a second part of thesis we highlight the importance of scientific software solution development in metabolic modelling and how it can be helpful in bioinformatics tool development along with software feature analysis such as performed on metabolic flux analysis applications. We proposed the “Butterfly” approach to implement efficiently scientific software programming. Using this approach, software applications were developed for quantitative Metabolic Flux Analysis and efficient Mass Isotopomer Distribution Analysis (MIDA) in metabolic modelling as well as for data management. “LS-MIDA” allows easy and efficient MIDA analysis and, with a more powerful algorithm and database, the software “Isotopo” allows efficient analysis of metabolic flows, for instance in pathogenic bacteria (Salmonella, Listeria). All three approaches have been published (see Appendices). N2 - Dynamische Wechselwirkungen und deren Veränderungen sind wichtige Themen der aktuellen Forschung in Bioinformatik und Systembiologie. Diese Promotionsarbeit konzentriert sich auf zwei besonders dynamische Aspekte der zellulären Anpassung: miRNA und Metabolite. miRNAs spielen eine wichtige Rolle in der Hämatopoese und Megakaryozytopoese, und die Thrombozyten miRNAs helfen uns, grundlegende Mechanismen der Thrombozytenfunktion besser zu verstehen. Die Arbeit analysiert die potentielle Rolle von miRNAs bei der Proteintranslation, der Thrombozytenlebensdauer sowie der Apoptose von Thrombozyten und ermöglichte die Identifizierung von beteiligten Signalwegen und möglicher regulatorischer Schlüsselmoleküle. Darüber hinaus wurden entsprechende miRNA / Ziel-mRNAs in murinen Thrombozyten systematisch gesammelt. Zudem wurden wichtige miRNAs, die am Aortenaneurysma beteiligt sein könnten, durch ähnliche Techniken vorhergesagt. Die klinische Relevanz von miRNAs als Biomarker, und resultierende potentielle Therapeutika, etwa über eine gewebsspezifische Beeinflussung der Genexpression bei Herz-Kreislauf Erkrankungen wird ebenfalls diskutiert. In einem zweiten Teil der Dissertation wird die Bedeutung der Entwicklung wissenschaftlicher Softwarelösungen für die Stoffwechselmodellierung aufgezeigt, mit einer Software-Feature-Analyse wurden verschiedene Softwarelösungen in der Bioinformatik verglichen. Wir vorgeschlagen dann den "Butterfly"-Ansatz, um effiziente wissenschaftliche Software-Programmierung zu implementieren. Mit diesem Ansatz wurden für die quantitative Stoffflussanalyse mit Isotopomeren effiziente Software-Anwendungen und ihre Datenverwaltung entwickelt: LS-MIDA ermöglicht eine einfache und effiziente Analyse, die Software "Isotopo" ermöglicht mit einem leistungsfähigeren Algorithmus und einer Datenbank, eine noch effizientere Analyse von Stoffwechselflüssen, zum Beispiel in pathogenen Bakterien (Salmonellen, Listerien). Alle drei Ansätze wurden bereits veröffentlicht (siehe Appendix). KW - miRNS KW - Bioinformatics KW - miRNA KW - Metabolic Modelling KW - Spectral Data Analysis KW - Butterfly KW - Thrombozyt KW - Bioinformatik KW - Stoffwechsel KW - Modellierung KW - Metabolischen Modellierung Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-102900 ER -