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Crystal structures of NK1–heparin complexes reveal the basis for NK1 activity and enable engineering of potent agonists of the MET receptor

机译:NK1-肝素复合物的晶体结构揭示了NK1活性的基础并能够工程化MET受体的有效激动剂

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摘要

NK1 is a splice variant of the polypeptide growth factor HGF/SF, which consists of the N-terminal (N) and first kringle (K) domain and requires heparan sulfate or soluble heparin for activity. We describe two X-ray crystal structures of NK1–heparin complexes that define a heparin-binding site in the N domain, in which a major role is played by R73, with further contributions from main chain atoms of T61, K63 and G79 and the side chains of K60, T61, R76, K62 and K58. Mutagenesis experiments demonstrate that heparin binding to this site is essential for dimerization in solution and biological activity of NK1. Heparin also comes into contact with a patch of positively charged residues (K132, R134, K170 and R181) in the K domain. Mutation of these residues yields NK1 variants with increased biological activity. Thus, we uncover a complex role for heparan sulfate in which binding to the primary site in the N domain is essential for biological activity whereas binding to the K domain reduces activity. We exploit the interaction between heparin and the K domain site in order to engineer NK1 as a potent receptor agonist and suggest that dual (positive and negative) control may be a general mechanism of heparan sulfate-dependent regulation of growth factor activity.
机译:NK1是多肽生长因子HGF / SF的剪接变体,由N端(N)和第一个Kringle(K)域组成,需要硫酸乙酰肝素或可溶性肝素才能发挥活性。我们描述了NK1-肝素复合物的两个X射线晶体结构,它们定义了N域中的肝素结合位点,其中R73起主要作用,T61,K63和G79主链原子以及K60,T61,R76,K62和K58的侧链。诱变实验表明,肝素与该位点的结合对于NK1溶液的二聚化和生物学活性至关重要。肝素还与K结构域中的一堆带正电荷的残基(K132,R134,K170和R181)接触。这些残基的突变产生具有增加的生物活性的NK1变体。因此,我们发现硫酸乙酰肝素具有复杂的作用,其中与N结构域的主要位点的结合对于生物学活性至关重要,而与K结构域的结合则降低活性。为了利用NK1作为有效的受体激动剂,我们利用肝素和K结构域位点之间的相互作用,并建议双重(阳性和阴性)控制可能是硫酸乙酰肝素依赖性生长因子活性调节的一般机制。

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