High resolution hybrid mass spectrometer

项目来源

德国科学基金(DFG)

项目主持人

Christian Freund

项目受资助机构

Freie Universität Berlin

项目编号

420241182

立项年度

2019

立项时间

未公开

研究期限

未知 / 未知

项目级别

国家级

受资助金额

未知

学科

Basic Research in Biology and Medicine;Molecular Chemistry

学科代码

未公开

基金类别

Major Research Instrumentation

关键词

未公开

参与者

Professor Dr. Christian Freund

参与机构

Freie Universität Berlin

项目标书摘要:The goal of this application is the new acquisition of a high resolution mass spectrometer at Freie Universität Berlin.The instrument is planned to be used for proteomic investigations,for the identification of post-translational modifications and for the investigation of intact proteins or protein complexes by native mass spectrometry.As part of the existing BioSupraMol facility the spectrometer is intended to be installed at the Department of Biology/Chemistry/Pharmacy and should serve the diverse requirements of the individual research groups.The intended projects reach from typical protoemic applications for the identification of protein networks in complex mixtures to questions related to structure and molecular mechanism underlying protein complex formation.The biological systems that will be interrogated are also of diverse origin and for example comprise questions of the change of proteomes and interactomes in bacteria upon changing environmental conditions to questions that ask for modifications of proteins upon stimulation of the nervous or immune system.

Application Abstract: The goal of this application is the new acquisition of a high resolution mass spectrometer at Freie Universität Berlin.The instrument is planned to be used for proteomic investigations,for the identification of post-translational modifications and for the investigation of intact proteins or protein complexes by native mass spectrometry.As part of the existing BioSupraMol facility the spectrometer is intended to be installed at the Department of Biology/Chemistry/Pharmacy and should serve the diverse requirements of the individual research groups.The intended projects reach from typical protoemic applications for the identification of protein networks in complex mixtures to questions related to structure and molecular mechanism underlying protein complex formation.The biological systems that will be interrogated are also of diverse origin and for example comprise questions of the change of proteomes and interactomes in bacteria upon changing environmental conditions to questions that ask for modifications of proteins upon stimulation of the nervous or immune system.

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