Research Group 4: Reproduction Biology |
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Figure: Ram spermatozoa after cryopreservation - thirty minutes after labeling with C6-NBD-phosphatidylserine (green fluorescence) and propidiumiodide (red fluorescence) in the presence of 20 mM dithionite. Fluorescence of C6-NBD-phosphatidylserine remained preserved in thepresence of dithionite only in viable cells (not stained by propidiumiodide, note the motile green tails). The fluorescent analogue of phosphatidylserine is actively enriched on the cytoplasmic leaflet of the cell membrane (from Müller et al. (1999), J Cell Sci. 112, 11- 20). |
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Schiller J, Müller K, Süß R, Arnhold J, Gey C, Herrmann A, Leßig
J, Arnold K, Müller P (2003): Analysis of the Lipid Composition
of Bull Spermatozoa by MALDI-TOF Mass Spectrometry and thin-layer
chromatography - A cautionary note. Chemistry and Physics of Lipids
126, 85-94
Kurz A, Viertel D, Herrmann A, Müller K (2005): Localisation
of phosphatidylserine in boar sperm cell membranes during capacitation
and acrosome reaction. Reproduction 130, 615-626
Fuchs B, Müller
K, Göritz F, Blottner S, Schiller J (2007): Characteristic oxidation
products of choline plasmalogens are detectable in cattle and roe
deer spermatozoa by MALDI-TOF mass spectrometry. Lipids 42(11),
991-998. DOI 10.1007/s11745-007-3108-7
Fuchs B, Jakop U, Göritz
F, Hermes R, Hildebrandt T, Schiller J, Müller K (2008): MALDI-TOF
"fingerprint" phospholipid mass spectra allow the differentiation
between ruminantia and feloideae spermatozoa. Theriogenology 71,
568-575. http://dx.doi.org/10.1016/j.theriogenology.2008.08.023
Current research topics
Cooperation
Institut für
Biologie/Biophysik der Humboldt-Universität zu Berlin
Institut für medizinische
Physik und Biophysik der Universität Leipzig
Institut für Fortpflanzung
landwirtschaftlicher Nutztiere Schönow e.V.
Forschungsinstitut
für molekulare Pharmakologie im Forschungsverbund Berlin e.V.
Federal
University of Paraná, Centro Politécnico, Sector of Biological Science,
Department of Physiology, Curitiba, Brazil
see also reseach group 3 and 5
Seminal fluid has crucial effects on the function of spermatozoa. In the female genital tract, it exerts immunsuppressive effects and acts stimulatory within the fertilization cascade. In dependence of the mammalian species, different lipid and protein components were found in the seminal fluid. We are interested to explore similar and specific functions of seminal fluid components and their species-specific contribution to the general principles of fertilization.
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Results / Publications
Greube A, Müller K, Töpfer-Petersen E, Herrmann A, Müller P (2004):
Interaction of Fn type II proteins with membranes: the stallion
seminal plasma protein SP-1/2. Biochemistry 43, 464-472
Tannert
A, Kurz A, Erlemann KR, Müller K, Herrmann A, Schiller J, Töpfer-Petersen
E, Manjunath P, Müller P (2007): The bovine seminal plasma protein
PDC-109 extracts phosphorylcholine containing lipids from the outer
membrane leaflet. Europ. Biophys. J. 36, 461-476.
Tannert A,
Töpfer-Petersen E, Herrmann A, Müller K, Müller P (2007): The lipid
composition modulates the influence of the bovine seminal plasma
protein PDC-109 on membrane stability. Biochemistry 46 (41), 11621
-11629. DOI: 10.1021/bi7011299
Cooperation
Institut
für Fortpflanzung landwirtschaftlicher Nutztiere Schönow e.V.
Institut für
Biologie/Biophysik der Humboldt-Universität zu Berlin
To assess the fertilizing ability of sperm samples, all aspects
of the fertilization cascade have to be considered. Our aim is the
refinement of a comprehensive set of functional assays (applicable
to semen of many species) to provide objective parameters for sperm
capabilities. In continuation to previous investigations, the quantitative
and qualitative characterization of spermatogenesis will complete
the semen analysis if testis tissue is available.
The maintenance
of sperm function during sperm preservation is the prerequisite
for a successful artificial insemination, for in vitro fertilization
and, at least partly, for intracytoplasmatic sperm injection. Therefore,
we search for those species-dependent sperm properties that cause
the different sensibility towards cooling and freezing, and aim
to develop customized methods for the semen preservation in different
species.
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Results/Publications
Reid CE, Hermes R, Blottner S, Goeritz F, Wibbelt G, Walzer C,
Bryant BR, Portas TJ, Streich WJ, Hildebrandt TB (2008): Split-sample
comparison of directional and liquid nitrogen vapour freezing method
on post-thaw semen quality in white rhinoceroses (Ceratotherium
simum simum and Ceratotherium simum cottoni). Theriogenology 71,
275-291.
Müller K, Müller P, Pincemy G, Kurz A, Labbe C
(2008): Characterization of sperm plasma membrane properties after
cholesterol modification. Consequences for cryopreservation of rainbow
trout spermatozoa. Biol Reprod 78, 390-399
Current research topics
Cooperation
Institut für Fortpflanzung
landwirtschaftlicher Nutztiere Schönow e.V.
Länderinstitut
für Bienenkunde Hohen Neuendorf e.V.
Minitüb
GmbH, Tiefenbach
INRA,
Joint Research Unit for Fish Physiology, Biodiversity and the Environment,
France
see also research group 1, 3, 5
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