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德國萊布尼茨分子藥理學(xué)研究所生物物理學(xué)博士后招收

時(shí)間:2013-09-30來源:博士人才網(wǎng) 作者:91boshi
Prof. Thomas Jentsch, head of the Department Physiology and Pathology of Ion Transport of the Leibniz Institut für Molekulare Pharmakologie (FMP) and the Max-Delbrück-Centrum für Molekulare Medizin (MDC), is looking for a postdoctoral research fellow with expertise in Biophysics (Electrophysiology and Ion-imaging). Applications of physicists are particularly welcome. The position is full time with a fixed-term contract, salary pay grade 13 TVöD according to German Public Service, and can be filled soon. The FMP and MDC are equal opportunity employers. Among equally qualified applicants, preference will be given to disabled candidates.

Description

The successful candidate will be working in an interdisciplinary and international team and focus on one of the aspects of ion transport investigated in our group. Our laboratory works on many aspects of ion transport processes, ranging from structure/function analysis and biophysics to cell biology, physiology, and role in human disease. Accordingly we use a broad array of techniques, including molecular biology, electrophysiology, ion imaging, morphology, biochemistry, and generation and analysis of genetically modified mice. We are focusing on CLC chloride channels and transporters, KCNQ potassium channels, and Ca-activated Cl channels. These can be found at the plasma membrane and on intracellular organelles like endosomes and lysosomes. Phenotypes caused by gene disruption in mice or genetic disease in humans include e.g. impaired endocytosis and lysosomal storage, neurodegeneration, epilepsy, and osteopetrosis. Our knock-out mouse models lead to many fascinating problems that can be tackled by electrophysiological analysis of slice preparations or of cultured cells derived from these mice, often in combination with optical methods. In the Ion Imaging field, we would in particular like to study the luminal pH and chloride of vesicles, but also use e.g. Ca-imaging as an indicator of neuronal activity. Our lab is well-equipped in this area with five patch-clamp set-ups, two 2-electrode voltage-clamp set-ups for oocytes, two ion imaging set-ups, TIRF and confocal microscopes.  

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