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Synthesis and Biological Evaluation of a Novel C8-Pyrrolobenzodiazepine (PBD) Adenosine Conjugate. A Study on the Role of the PBD Ring in the Biological Activity of PBD-Conjugates

机译:新型C8-吡咯并苯并二氮杂(PBD)腺苷缀合物的合成和生物学评估。 PBD环在PBD结合物生物活性中的作用研究

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摘要

Here we sought to evaluate the contribution of the PBD unit to the biological activity of PBD-conjugates and, to this end, an adenosine nucleoside was attached to the PBD A-ring C8 position. A convergent approach was successfully adopted for the synthesis of a novel C8-linked pyrrolo(2,1- )(1,4)benzodiazepine(PBD)-adenosine(ADN) hybrid. The PBD and adenosine (ADN) moieties were synthesized separately and then linked through a pentynyl linker. To our knowledge, this is the first report of a PBD connected to a nucleoside. Surprisingly, the compound showed no cytotoxicity against murine cells and was inactive against and strains and did not bind to guanine-containing DNA sequences, as shown by DNase I footprinting experiments. Molecular dynamics simulations revealed that the PBD–ADN conjugate was poorly accommodated in the DNA minor groove of two DNA sequences containing the AGA-PBD binding motif, with the adenosine moiety of the ligand preventing the covalent binding of the PBD unit to the guanine amino group of the DNA duplex. These interesting findings shed further light on the ability of the substituents attached at the C8 position of PBDs to affect and modulate the biological and biophysical properties of PBD hybrids.
机译:在这里,我们试图评估PBD单元对PBD偶联物生物学活性的贡献,为此,腺苷核苷被连接到PBD A环C8位置。成功地采用了一种收敛方法来合成新型的C8连接的吡咯并(2,1-)(1,4)苯并二氮杂(PBD)-腺苷(ADN)杂化物。分别合成PBD和腺苷(ADN)部分,然后通过戊炔基连接子连接。据我们所知,这是与核苷连接的PBD的首次报道。令人惊讶地,如DNase I足迹实验所示,该化合物对鼠类细胞没有细胞毒性,并且对鼠类无活性,并且不与含鸟嘌呤的DNA序列结合。分子动力学模拟表明,PBD-ADN共轭物不能很好地容纳在两个含有AGA-PBD结合基序的DNA序列的DNA小沟中,配体的腺苷部分阻止了PBD单元与鸟嘌呤氨基的共价结合。 DNA双链体。这些有趣的发现进一步揭示了在PBD的C8位置连接的取代基影响和调节PBD杂种的生物学和生物物理特性的能力。

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