Trivalent siRNA-Conjugates with Guanosine as ASGPR-Binder Show Potent Knock-Down In Vivo

IF 6.8 1区 医学 Q1 CHEMISTRY, MEDICINAL
Armin Hofmeister*, Kerstin Jahn-Hofmann, Bodo Brunner, Mike Helms, Christiane Metz-Weidmann, Christoph Poeverlein, Gernot Zech, Ziyu Li, Gerhard Hessler, Herman Schreuder, Bettina Elshorst, Arne Krack, Michael Kurz, Christoph Heubel and Sabine Scheidler, 
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Abstract

To increase the chemical space around the well-known GalNAc-ligand as ASGPR-binder, a high-throughput screening campaign was performed, testing approximately 550,000 compounds. After evaluation of the potential screening hits, only one compound, which showed high similarity with guanosine nucleosides, was chosen for further profiling. Crystal structure analysis revealed the coordination of the Ca2+-ion within the ASGPR-binding site by the cis-diol motif of the ribose unit as well as an additional π–π-interaction of the purine heterocycle to tryptophan-243. Based on these findings, guanosine was attached via the 5′-OH group to a recently described morpholino-based nucleotide using two different linker units. The resulting morpholino-guanosine building blocks were conjugated to the 5′-end of a literature-known transthyretin targeting small interfering RNA (siRNA), leading to trivalent siRNA-guanosine conjugates, which were tested for their TTR knockdown and exhibited similar potencies as the analogous GalNAc-conjugates in vitro and in vivo.

Abstract Image

鸟苷作为asgpr结合物的三价sirna在体内显示出有效的敲除
为了增加已知的galnac配体作为asgpr粘合剂周围的化学空间,进行了高通量筛选活动,测试了大约55万个化合物。在对潜在的筛选命中值进行评估后,只选择了一个与鸟苷核苷高度相似的化合物进行进一步的分析。晶体结构分析表明,asgpr结合位点内的Ca2+离子通过核糖单元的顺式二醇基序进行配位,嘌呤杂环与色氨酸-243之间还存在π- π相互作用。基于这些发现,鸟苷通过5 ' -OH基团通过两种不同的连接单元连接到最近描述的基于morpholino的核苷酸上。将得到的morpholino-guanosine构建块偶联到文献中已知的靶向小干扰RNA (siRNA)的转甲状腺素的5 '端,得到三价siRNA-guanosine偶联物,并对其TTR敲除进行了测试,并在体外和体内表现出与类似galnac偶联物相似的效力。
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来源期刊
Journal of Medicinal Chemistry
Journal of Medicinal Chemistry 医学-医药化学
CiteScore
4.00
自引率
11.00%
发文量
804
审稿时长
1.9 months
期刊介绍: The Journal of Medicinal Chemistry is a prestigious biweekly peer-reviewed publication that focuses on the multifaceted field of medicinal chemistry. Since its inception in 1959 as the Journal of Medicinal and Pharmaceutical Chemistry, it has evolved to become a cornerstone in the dissemination of research findings related to the design, synthesis, and development of therapeutic agents. The Journal of Medicinal Chemistry is recognized for its significant impact in the scientific community, as evidenced by its 2022 impact factor of 7.3. This metric reflects the journal's influence and the importance of its content in shaping the future of drug discovery and development. The journal serves as a vital resource for chemists, pharmacologists, and other researchers interested in the molecular mechanisms of drug action and the optimization of therapeutic compounds.
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