首页> 外文期刊>Molecular Metabolism >Notum deacylates octanoylated ghrelin
【24h】

Notum deacylates octanoylated ghrelin

机译:令人毛骨悚然的辛酸辛烷酯

获取原文
           

摘要

Objectives The only proteins known to be modified by O-linked lipidation are Wnts and ghrelin, and enzymatic removal of this post-translational modification inhibits ligand activity. Indeed, the Wnt-deacylase activity of Notum is the basis of its ability to act as a feedback inhibitor of Wnt signalling. Whether Notum also deacylates ghrelin has not been determined. Methods We used mass spectrometry to assay ghrelin deacylation by Notum and co-crystallisation to reveal enzyme–substrate interactions at the atomic level. CRISPR/Cas technology was used to tag endogenous Notum and assess its localisation in mice while liver-specific Notum knock-out mice allowed us to investigate the physiological role of Notum in modulating the level of ghrelin deacylation. Results Mass spectrometry detected the removal of octanoyl from ghrelin by purified active Notum but not by an inactive mutant. The 2.2?? resolution crystal structure of the Notum-ghrelin complex showed that the octanoyl lipid was accommodated in the hydrophobic pocket of the Notum. The knock-in allele expressing HA-tagged Notum revealed that Notum was produced in the liver and present in the bloodstream, albeit at a low level. Liver-specific inactivation of Notum in animals fed a high-fat diet led to a small but significant increase in acylated ghrelin in the circulation, while no such increase was seen in wild-type animals on the same diet. Conclusions Overall, our data demonstrate that Notum can act as a ghrelin deacylase, and that this may be physiologically relevant under high-fat diet conditions. Our study therefore adds Notum to the list of enzymes, including butyrylcholinesterase and other carboxylesterases, that modulate the acylation state of ghrelin. The contribution of multiple enzymes could help tune the activity of this important hormone to a wide range of physiological conditions.
机译:目的唯一已知通过O型脂质修饰的蛋白质是WNT和Ghrelin,并且这种翻译后修饰的酶促除去抑制配体活性。实际上,孔的Wnt-deacylase活性是其作为Wnt信号传导的反馈抑制剂的能力的基础。尚未确定缺口还没有确定Ghrelin。方法采用质谱法测定缺口的Ghrelin脱酰序和共结晶以显示原子水平的酶 - 底物相互作用。 CRISPR / CAS技术用于标记内源性嗅探,并评估其小鼠的本地化,而肝脏特异性的敲击小鼠允许我们探讨荧光蛋白调节Ghrelin诱导水平的生理作用。结果质谱法通过纯化的活性嗅探检测从Ghrelin中除去辛烷酰基,但不是由无活性突变体。 2.2 ??孔Ghrelin综合体的分辨率晶体结构表明,辛烷罗脂质被容纳在孔的疏水口中。表达HA标签孔的敲击等位基因显示出血液中的血液中产生并存在于血液中,尽管较低。在血液循环中喂养高脂饮食中的动物患者的血吸虫的血吸虫的灭活导致了酰化的Ghrelin的少量但显着增加,而在同样的饮食中野生型动物中没有看到这种增加。结论总体而言,我们的数据表明,嗅探物可以作为Ghrelin Deacylase,并且这可能在高脂饮食条件下生理相关。因此,我们的研究向酶列表中添加了孔,包括丁酰胆碱酯酶和其他羧基酯酶,其调节Ghrelin的酰化状态。多种酶的贡献可以帮助调节这种重要激素的活动到广泛的生理条件。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号