Abstract. The proteins of the mouse major urinary protein complex (MUP), members of the lipocalin family, bind volatile pheromones and interact with the vomeronasal neuroepithelium of the olfactory system. We report the expression of a MUP protein using its native signal sequence for secretion in the methylotrophic yeast, Pichia pastoris. Mature recombinant MUP (rMUP) is secreted at a concentration of 270 mg/1 in minimal medium and it is isolated from the culture supernatant by one step ion-exchange chromatography in a nearly pure form. Binding activity, tested with an odorant molecule which displays high affinity for native MUP, indicates that rMUP has a behavior similar to the native one. This finding suggests that the protein...
Mammalian olfaction depends on chemosensory neurons of the main olfactory epithelia (MOE), and/or of...
Major urinary proteins (MUPs) form an ensemble of protein isoforms which are expressed and secreted ...
Mice use pheromones, chemical cues emitted in bodily secretions and detected by the olfactory system...
AbstractThe proteins of the mouse major urinary protein complex (MUP), members of the lipocalin fami...
The lipocalin protein family is characterized in structure by a conserved hydrophobic pocket which c...
The mouse major urinary proteins (MUPs) are an ensemble of isoforms secreted by adult male mice and...
In the urine of sexually mature male mice there is an ensemble of protein isoforms defined as Major ...
The mouse Major Urinary Proteins (MUPs), known also as Mus m 1 urinary allergen complex , are lipoca...
The major urinary proteins (MUPs) are proteins secreted by the liver and filtered by the kidneys int...
Abstract Background Chemical communication in mammals involves globular lipocalins that protect and ...
Abstract It is increasingly clear that mediation of chemical signals is not the exclusive domain of ...
Proteins from the lipocalin family play significant roles during the transport of chemical signals. ...
International audienceThis study targets to express the piglet odorant-binding protein (p1OBP) and c...
<p>Mammalian olfaction depends on chemosensory neurons of the main olfactory epithelia (MOE), and/or...
<p>Mammalian olfaction depends on chemosensory neurons of the main olfactory epithelia (MOE), and/or...
Mammalian olfaction depends on chemosensory neurons of the main olfactory epithelia (MOE), and/or of...
Major urinary proteins (MUPs) form an ensemble of protein isoforms which are expressed and secreted ...
Mice use pheromones, chemical cues emitted in bodily secretions and detected by the olfactory system...
AbstractThe proteins of the mouse major urinary protein complex (MUP), members of the lipocalin fami...
The lipocalin protein family is characterized in structure by a conserved hydrophobic pocket which c...
The mouse major urinary proteins (MUPs) are an ensemble of isoforms secreted by adult male mice and...
In the urine of sexually mature male mice there is an ensemble of protein isoforms defined as Major ...
The mouse Major Urinary Proteins (MUPs), known also as Mus m 1 urinary allergen complex , are lipoca...
The major urinary proteins (MUPs) are proteins secreted by the liver and filtered by the kidneys int...
Abstract Background Chemical communication in mammals involves globular lipocalins that protect and ...
Abstract It is increasingly clear that mediation of chemical signals is not the exclusive domain of ...
Proteins from the lipocalin family play significant roles during the transport of chemical signals. ...
International audienceThis study targets to express the piglet odorant-binding protein (p1OBP) and c...
<p>Mammalian olfaction depends on chemosensory neurons of the main olfactory epithelia (MOE), and/or...
<p>Mammalian olfaction depends on chemosensory neurons of the main olfactory epithelia (MOE), and/or...
Mammalian olfaction depends on chemosensory neurons of the main olfactory epithelia (MOE), and/or of...
Major urinary proteins (MUPs) form an ensemble of protein isoforms which are expressed and secreted ...
Mice use pheromones, chemical cues emitted in bodily secretions and detected by the olfactory system...