Weaver Richard E, Wigglesworth Mark J, Donnelly Dan
School of Biomedical Sciences, Faculty of Biological Sciences, University of Leeds, Leeds LS2 9JT, UK.
GlaxoSmithKline, New Frontiers Science Park North, Third Avenue, Harlow CM19 5AW, UK.
Peptides. 2014 Nov;61:83-7. doi: 10.1016/j.peptides.2014.09.004. Epub 2014 Sep 13.
Parathyroid hormone (PTH) acts via the receptor PTH1 and plays an important role in calcium homeostasis. PTH's interaction with the N-terminal domain of PTH1 is mediated in part by Arg-20 on the peptide which forms a number of interactions with the receptor: a charge-charge interaction with Asp-137; hydrogen bonds with the backbone of Asp-29 and Met-32; and hydrophobic interactions with Met-32 and Gln-37. The aim of this work was to establish the importance of the charge-charge interaction through the combined use of modified peptide ligands, site-directed mutations of the receptor, and pharmacological assays. The substitution of Arg-20 with norleucine resulted in a 50-fold reduction in potency at PTH1 and Asp-137-Glu while, in contrast, both Asp-137-Asn and Asp-137-Ala receptors were largely insensitive to this ligand modification. The effect of this removal of the positive charge as position 20 could be partially rescued at PTH1 and Asp-137-Glu, but not Asp-137-Asn and Asp-137-Ala, through a substitution of peptide position 20 with ornithine. The latter two receptors, which have no negative charge at position 137, displayed potency for PTH that was reduced by 40- and 117-fold, respectively. These data demonstrate that a negative charge at residue-137 is important for interacting with ligands containing a positive charge at residue-20, and that the Arg-20 interaction with Asp-137, observed in the crystal structure of the isolated N-terminal domain of PTH1, is likely to be present in the full length receptor where it provides an important affinity- and potency-generating interaction through a salt bridge.
甲状旁腺激素(PTH)通过PTH1受体发挥作用,在钙稳态中起重要作用。PTH与PTH1的N端结构域的相互作用部分由肽上的Arg-20介导,它与受体形成多种相互作用:与Asp-137形成电荷-电荷相互作用;与Asp-29和Met-32的主链形成氢键;与Met-32和Gln-37形成疏水相互作用。这项工作的目的是通过联合使用修饰肽配体、受体的定点突变和药理学分析来确定电荷-电荷相互作用的重要性。用正亮氨酸取代Arg-20导致对PTH1和Asp-137-Glu的效力降低50倍,而相比之下,Asp-137-Asn和Asp-137-Ala受体对这种配体修饰基本不敏感。在PTH1和Asp-137-Glu中,通过用鸟氨酸取代肽的第20位,可以部分挽救第20位正电荷去除的影响,但在Asp-137-Asn和Asp-137-Ala中则不能。后两种受体在第137位没有负电荷,对PTH的效力分别降低了40倍和117倍。这些数据表明,第137位的负电荷对于与第20位含有正电荷的配体相互作用很重要,并且在PTH1分离的N端结构域的晶体结构中观察到的Arg-20与Asp-137的相互作用可能存在于全长受体中,通过盐桥提供重要的亲和力和效力产生相互作用。