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高通量药物筛选能够鉴定出特异性靶向严重急性呼吸综合征冠状病毒2(SARS-CoV-2)Delta变异株和奥密克戎/BA.1变异株不同进入途径的进入抑制剂。

High-throughput drug screening allowed identification of entry inhibitors specifically targeting different routes of SARS-CoV-2 Delta and Omicron/BA.1.

作者信息

Kuzikov Maria, Woens Jannis, Zaliani Andrea, Hambach Julia, Eden Thomas, Fehse Boris, Ellinger Bernhard, Riecken Kristoffer

机构信息

Fraunhofer Institute for Translational Medicine and Pharmacology ITMP, Schnackenburgallee 114, 22525 Hamburg, Germany; Fraunhofer Cluster of Excellence for Immune-Mediated Diseases CIMD, Theodor-Stern-Kai 7, 60596 Frankfurt am Main, Germany; Department of Life Sciences and Chemistry, Jacobs University Bremen, 28759 Bremen, Germany.

Research Department Cell and Gene Therapy, Department of Stem Cell Transplantation, University Medical Center Hamburg-Eppendorf, 20246 Hamburg, Germany.

出版信息

Biomed Pharmacother. 2022 Jul;151:113104. doi: 10.1016/j.biopha.2022.113104. Epub 2022 May 16.

Abstract

The Severe Acute Respiratory Syndrome Coronavirus type 2 (SARS-CoV-2) has continuously evolved, resulting in the emergence of several variants of concern (VOCs). To study mechanisms of viral entry and potentially identify specific inhibitors, we pseudotyped lentiviral vectors with different SARS-CoV-2 VOC spike variants (D614G, Alpha, Beta, Delta, Omicron/BA.1), responsible for receptor binding and membrane fusion. These SARS-CoV-2 lentiviral pseudoviruses were applied to screen 774 FDA-approved drugs. For the assay we decided to use CaCo2 cells, since they equally allow cell entry through both the direct membrane fusion pathway mediated by TMPRSS2 and the endocytosis pathway mediated by cathepsin-L. The active molecules which showed stronger differences in their potency to inhibit certain SARS-CoV-2 VOCs included antagonists of G-protein coupled receptors, like phenothiazine-derived antipsychotic compounds such as Chlorpromazine, with highest activity against the Omicron pseudovirus. In general, our data showed that the various VOCs differ in their preferences for cell entry, and we were able to identify synergistic combinations of inhibitors. Notably, Omicron singled out by relying primarily on the endocytosis pathway while Delta preferred cell entry via membrane fusion. In conclusion, our data provide new insights into different entry preferences of SARS-CoV-2 VOCs, which might help to identify new drug targets.

摘要

严重急性呼吸综合征冠状病毒2型(SARS-CoV-2)不断进化,导致出现了几种值得关注的变异株(VOC)。为了研究病毒进入机制并潜在地鉴定特异性抑制剂,我们用不同的SARS-CoV-2 VOC刺突变异株(D614G、阿尔法、贝塔、德尔塔、奥密克戎/BA.1)对慢病毒载体进行假型化,这些变异株负责受体结合和膜融合。这些SARS-CoV-2慢病毒假病毒被用于筛选774种美国食品药品监督管理局(FDA)批准的药物。对于该检测,我们决定使用CaCo2细胞,因为它们同样允许通过由跨膜丝氨酸蛋白酶2(TMPRSS2)介导的直接膜融合途径和由组织蛋白酶-L介导的内吞途径进入细胞。在抑制某些SARS-CoV-2 VOC的效力上表现出更强差异的活性分子包括G蛋白偶联受体拮抗剂,如吩噻嗪衍生的抗精神病化合物,如氯丙嗪,对奥密克戎假病毒具有最高活性。总体而言,我们的数据表明,各种VOC在细胞进入偏好方面存在差异,并且我们能够鉴定出抑制剂的协同组合。值得注意的是,奥密克戎主要依赖内吞途径,而德尔塔则更喜欢通过膜融合进入细胞。总之,我们的数据为SARS-CoV-2 VOC的不同进入偏好提供了新的见解,这可能有助于识别新的药物靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f3ad/9108036/2d1aaca146f0/ga1_lrg.jpg

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