Freimoser: Difference between revisions
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< | <h2><b>Florian M. Freimoser, PhD</b></h2> | ||
<h3>Institute of Plant Sciences</h3> | |||
<b>Biochemistry and Physiology of Plants</b> | |||
ETH Zurich, LFW D46.1<br> | |||
Universitätsstr. 2<br> | |||
CH-8092 Zurich<br> | |||
Switzerland | |||
<br> | |||
Tel: +41 +44 632 38 44<br> | |||
Fax: +41 +44 632 10 44<br> | |||
Please also visit our [http://www.polyphosphate.ethz.ch/ other web site!] | |||
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<h3>The molecule we study is so plain<br> | <h3>The molecule we study is so plain<br> | ||
the inorganic polyphosphate chain</h3> | the inorganic polyphosphate chain</h3> | ||
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Our group studies a simple | |||
molecule: <strong>inorganic | molecule: <strong>inorganic | ||
polyphosphate (poly P)</strong>.<br> | polyphosphate (poly P)</strong>.<br> | ||
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phosphate residues | phosphate residues | ||
(from three to more than a thousand) that are | (from three to more than a thousand) that are | ||
linked by energy-rich phosphoanhydride bonds. It | linked by energy-rich phosphoanhydride bonds. It occurs ubiquitously in all living cells and regulates many molecular and biological processes. Nevertheless, poly P is scarcely studied and little is known about poly P metabolism and its exact molecular functions; especially in eukaryotes. In our group we have developed methods to quantify poly P, to stain and localize poly P and to screen for poly P binding proteins. We are using these tools to investigate poly P metabolism and functions in fungi, plants and algae. However, at the moment our main efforts are devoted to the study of poly P metabolism in the yeast ''Saccharomyces cerevisiae'' and of poly P in fungal cell walls. | ||
in all | |||
and | |||
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Latest revision as of 13:55, 7 May 2008
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Florian M. Freimoser, PhDInstitute of Plant SciencesBiochemistry and Physiology of Plants
ETH Zurich, LFW D46.1 Please also visit our other web site! |
The molecule we study is so plain
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