Rose J P, Wu C K, Hsiao C D, Breslow E, Wang B C
Department of Biochemistry and Molecular Biology, University of Georgia, Athens 30602, USA.
Nat Struct Biol. 1996 Feb;3(2):163-9. doi: 10.1038/nsb0296-163.
The first crystal structure of the pituitary hormone oxytocin complexed with its carrier protein neurophysin has been determined and refined to 3.0 A resolution. The hormone-binding site is located at the end of a 3(10)-helix and involves residues from both domains of each monomer. Hormone residues Tyr 2, which is buried deep in the binding pocket, and Cys 1 have been confirmed as the key residues involved in neurophysin-hormone recognition. We have compared the bound oxytocin observed in the neurophysin-oxytocin complex, the X-ray structures of unbound oxytocin analogues and the NMR-derived structure for bound oxytocin. We find that while our structure is in agreement with the previous crystallographic findings, it differs from the NMR result with regard to how Tyr 2 of the hormone is recognized by neurophysin.
垂体激素催产素与其载体蛋白神经垂体素复合的首个晶体结构已被确定,并精修至3.0埃分辨率。激素结合位点位于一个3(10)-螺旋的末端,涉及每个单体两个结构域的残基。深埋于结合口袋中的激素残基Tyr 2以及Cys 1已被确认为参与神经垂体素-激素识别的关键残基。我们比较了在神经垂体素-催产素复合物中观察到的结合型催产素、未结合型催产素类似物的X射线结构以及结合型催产素的核磁共振衍生结构。我们发现,虽然我们的结构与之前的晶体学研究结果一致,但在神经垂体素如何识别激素的Tyr 2方面,它与核磁共振结果不同。