Zagidullin Almaz, Milyukov Vasili, Rizvanov Albert, Bulatov Emil
Institute of Fundamental Medicine and Biology, Kazan Federal University, 420008 Kazan, Russia.
A.E. Arbuzov Institute of Organic and Physical Chemistry, FRC Kazan Scientific Center of RAS, 420088 Kazan, Russia.
Explor Target Antitumor Ther. 2020;1(5):381-390. doi: 10.37349/etat.2020.00023. Epub 2020 Oct 30.
Proteolysis targeting chimeras (PROTACs) represent a promising class of hetero-bivalent molecules that facilitate ubiquitination of a target protein by simultaneously binding and bringing together both the E3 enzyme and the target. These compounds consist of three structural components: two ligands one of which binds the protein of interest (POI) while the other binds an E3 ubiquitin ligase to promote POI ubiquitination, and a linker connecting both moieties. Recent developments in the field highlight the fact that linker composition and length play a crucial role in achieving optimal PROTAC properties, modulate binding kinetics and substantially impacts the potency and selectivity. In this review, the authors briefly discuss the recent findings in PROTAC design approaches with focus on the linker. For each PROTAC such linker parameters as chemical nature, length, hydrophilicity and rigidity have to be optimized to achieve improved stability, bioavailability cell membrane permeability and suitable spatial orientation between the target POI and the E3 ubiquitin ligase. Thus rational linker design with respect to composition, length and attachment sites is essential for the development of potent PROTAC compounds. Computer-aided design and novel innovative linker strategies, such as PROTAC shortening, photo-switchable PROTACs, in-cell click-formed CLIPTACs, "click chemistry" approaches are also discussed in the review.
蛋白酶靶向嵌合体(PROTACs)是一类很有前景的异二价分子,通过同时结合E3酶和靶标并将二者聚集在一起,促进靶蛋白的泛素化。这些化合物由三个结构组分组成:两个配体,其中一个与目标蛋白(POI)结合,另一个与E3泛素连接酶结合以促进POI的泛素化,以及连接两个部分的接头。该领域的最新进展突出了这样一个事实,即接头的组成和长度在实现最佳PROTAC特性、调节结合动力学以及对效力和选择性产生重大影响方面起着关键作用。在这篇综述中,作者简要讨论了PROTAC设计方法的最新发现,重点是接头。对于每个PROTAC,都必须优化接头参数,如化学性质、长度、亲水性和刚性,以实现更高的稳定性、生物利用度、细胞膜通透性以及目标POI和E3泛素连接酶之间合适的空间取向。因此,关于组成、长度和连接位点的合理接头设计对于开发有效的PROTAC化合物至关重要。综述中还讨论了计算机辅助设计和新颖的创新接头策略,如PROTAC缩短、光开关PROTACs、细胞内点击形成的CLIPTACs、“点击化学”方法。