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International Union of Basic and Clinical Pharmacology. CI. Structures and Small Molecule Modulators of Mammalian Adenylyl Cyclases

机译:国际基础和临床药理学联盟。 CI。 哺乳动物腺苷酸环脂酶的结构和小分子调节剂

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摘要

Adenylyl cyclases (ACs) generate the second messenger cAMP from ATP. Mammalian cells express nine transmembrane AC (mAC) isoforms (AC1-9) and a soluble AC (sAC, also referred to as AC10). This review will largely focus on mACs. mACs are activated by the G-protein G alpha(s) and regulated by multiple mechanisms. mACs are differentially expressed in tissues and regulate numerous and diverse cell functions. mACs localize in distinct membrane compartments and form signaling complexes. sAC is activated by bicarbonate with physiologic roles first described in testis. Crystal structures of the catalytic core of a hybrid mAC and sAC are available. These structures provide detailed insights into the catalytic mechanism and constitute the basis for the development of isoformselective activators and inhibitors. Although potent competitive and noncompetitive mAC inhibitors are available, it is challenging to obtain compoundswith high isoform selectivity due to the conservation of the catalytic core. Accordingly, caution must be exerted with the interpretation of intact-cell studies. The development of isoform-selective activators, the plant diterpene forskolin being the starting compound, has been equally challenging. There is no known endogenous ligand for the forskolin binding site. Recently, development of selective sAC inhibitors was reported. An emerging field is the association of AC gene polymorphisms with human diseases. For example, mutations in the AC5 gene (ADCY5) cause hyperkinetic extrapyramidal motor disorders. Overall, in contrast to the guanylyl cyclase field, our understanding of the (patho) physiology of AC isoforms and the development of clinically useful drugs targeting ACs is still in its infancy.
机译:Adenylyl Cyclases(ACS)从ATP生成第二个信纸。哺乳动物细胞表达九种跨膜AC(MAC)同种型(AC1-9)和可溶性AC(SAC,也称为AC10)。此评论主要集中在Mac上。 MAC通过G蛋白Gα激活并通过多种机制调节。 MAC在组织中差异表达并调节许多多样化的细胞功能。 MACS定位在不同的膜隔室中并形成信号配合物。囊用碳酸氢盐激活,具有首先在睾丸中描述的生理作用。杂交MAC和囊的催化核的晶体结构可用。这些结构对催化机制提供了详细的见解,并构成了同种型选择性活化剂和抑制剂的开发的基础。虽然有效的竞争性和非竞争性MAC抑制剂可用,但由于催化芯的守恒而获得增强性高同种型选择性是挑战性的。因此,必须施加谨慎对完整细胞研究的解释。同种型选择性活化剂的发展,植物二萜Forskolin是起始化合物,同等挑战。对于Forskolin结合位点没有已知的内源性配体。最近,报道了选择性囊抑制剂的发展。新兴领域是AC基因多态性与人类疾病的关联。例如,AC5基因(ADCY5)中的突变引起高含量的外氮运动障碍。总体而言,与观论式环酰酶领域相比,我们对AC同种型的(Patho)生理学的理解以及临床上有用的药物的发展仍在其初期。

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  • 来源
    《Pharmacological reviews》 |2017年第2期|共47页
  • 作者单位

    Univ Texas Hlth Sci Ctr Houston McGovern Med Sch Dept Integrat Biol &

    Pharmacol POB 20708;

    Purdue Univ Dept Med Chem &

    Mol Pharmacol W Lafayette IN 47907 USA;

    Chapman Univ Sch Pharm Dept Biomed &

    Pharmaceut Sci Irvine CA USA;

    Univ Calif San Francisco Ctr Reprod Sci San Francisco CA 94143 USA;

    Univ Regensburg Inst Pharm Regensburg Germany;

    Hannover Med Sch Inst Pharmacol Hannover Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药理学;
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