Article (Scientific journals)
Solution structure of human prolactin
Teilum, K.; Hoch, J. C.; Goffin, Vincent et al.
2005In Journal of Molecular Biology, 351 (4), p. 810-23
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Keywords :
Amino Acid Sequence; Animals; Binding Sites; Human Growth Hormone/chemistry/genetics/metabolism; Humans; Models, Molecular; Molecular Sequence Data; Nuclear Magnetic Resonance, Biomolecular; Placental Lactogen/chemistry/genetics; Prolactin/*chemistry/genetics/metabolism; Protein Conformation; Receptors, Prolactin/genetics/metabolism; Recombinant Proteins/chemistry/genetics/metabolism; Sequence Homology, Amino Acid; Sheep; Solutions
Abstract :
[en] We report the solution structure of human prolactin determined by NMR spectroscopy. Our result is a significant improvement over a previous structure in terms of number and distribution of distance restraints, regularity of secondary structure, and potential energy. More significantly, the structure is sufficiently different that it leads to different conclusions regarding the mechanism of receptor activation and initiation of signal transduction. Here, we compare the structure of unbound prolactin to structures of both the homologue ovine placental lactogen and growth hormone. The structures of unbound and receptor bound prolactin/placental lactogen are similar and no noteworthy structural changes occur upon receptor binding. The observation of enhanced binding at the second receptor site when the first site is occupied has been widely interpreted to indicate conformational change induced by binding the first receptor. However, our results indicate that this enhanced binding at the second site could be due to receptor-receptor interactions or some other free energy sources rather than conformational change in the hormone. Titration of human prolactin with the extracellular domain of the human prolactin receptor was followed by NMR, gel filtration and electrophoresis. Both binary and ternary hormone-receptor complexes are clearly detectable by gel filtration and electrophoresis. The binary complex is not observable by NMR, possibly due to a dynamic equilibrium in intermediate exchange within the complex. The ternary complex of one hormone molecule bound to two receptor molecules is on the contrary readily detectable by NMR. This is in stark contrast to the widely held view that the ternary prolactin-receptor complex is only transiently formed. Thus, our results lead to improved understanding of the prolactin-prolactin receptor interaction.
Research center :
Giga-Development and Stem Cells - ULiège
Disciplines :
Biochemistry, biophysics & molecular biology
Author, co-author :
Teilum, K.;  Institute of Molecular Biology and Physiology, University of Copenhagen > Department of Protein Chemistry
Hoch, J. C.;  University of Connecticut Health Center Farmington > Department of Molecular Microbial and Structural Biology
Goffin, Vincent;  Université Paris Descartes / Université de Liège
Kinet, Sandrina;  Université de Liège - ULiège
Martial, Joseph ;  Université de Liège - ULiège > Département des sciences de la vie > GIGA-R : Biologie et génétique moléculaire
Kragelund, B. B.;  Institute of Molecular Biology and Physiology University of Copenhagen > Department of Protein Chemistry
Language :
English
Title :
Solution structure of human prolactin
Publication date :
2005
Journal title :
Journal of Molecular Biology
ISSN :
0022-2836
eISSN :
1089-8638
Publisher :
Academic Press, London, United Kingdom
Volume :
351
Issue :
4
Pages :
810-23
Peer reviewed :
Peer Reviewed verified by ORBi
Available on ORBi :
since 19 May 2009

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