Molecular Modeling of Single- and Double-Hydrocarbon-Stapled Coiled-Coil Inhibitors against Bcr-Abl: Toward a Treatment Strategy for CML.

IF 2.8 2区 化学 Q3 CHEMISTRY, PHYSICAL The Journal of Physical Chemistry B Pub Date : 2024-07-01 DOI:10.1021/acs.jpcb.4c02699
Maria Carolina P Lima, Braxten D Hornsby, Carol S Lim, Thomas E Cheatham
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Abstract

The chimeric oncoprotein Bcr-Abl is the causative agent of virtually all chronic myeloid leukemias and a subset of acute lymphoblastic leukemias. As a result of the so-called Philadelphia chromosome translocation t(9;22), Bcr-Abl manifests as a constitutively active tyrosine kinase, which promotes leukemogenesis by activation of cell cycle signaling pathways. Constitutive and oncogenic activation is mediated by an N-terminal coiled-coil oligomerization domain in Bcr (Bcr-CC), presenting a therapeutic target for inhibition of Bcr-Abl activity toward the treatment of Bcr-Abl+ leukemias. Previously, we demonstrated that a rationally designed Bcr-CC mutant, CCmut3, exerts a dominant negative effect upon Bcr-Abl activity by preferential oligomerization with Bcr-CC. Moreover, we have shown that conjugation to a leukemia-specific cell-penetrating peptide (CPP-CCmut3) improves intracellular delivery and activity. However, our full-length CPP-CCmut3 construct (81 aa) is encumbered by an intrinsically high degree of conformational variability and susceptibility to proteolytic degradation relative to traditional small-molecule therapeutics. Here, we iterate a new generation of CCmut3 inhibitors against Bcr-CC-mediated Bcr-Abl assembly designed to address these constraints through incorporation of all-hydrocarbon staples spanning i and i + 7 positions in α-helix 2 (CPP-CCmut3-st). We utilize computational modeling and biomolecular simulation to evaluate single- and double-stapled CCmut3 candidates in silico for dynamics and binding energetics. We further model a truncated system characterized by the deletion of α-helix 1 and the flexible loop linker, which are known to impart high conformational variability. To study the impact of the N-terminal cyclic CPP toward model stability and inhibitor activity, we also model the full-length and truncated systems devoid of the CPP, with a cyclized CPP, and with an open-configuration CPP, for a total of six systems that comprise our library. From this library, we present lead-stapled peptide candidates to be synthesized and evaluated experimentally as our next iteration of inhibitors against Bcr-Abl.

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针对 Bcr-Abl 的单烃基叠层和双烃基叠层线圈抑制剂的分子建模:迈向 CML 治疗策略。
嵌合型肿瘤蛋白 Bcr-Abl 是几乎所有慢性髓性白血病和部分急性淋巴细胞白血病的致病因子。由于所谓的费城染色体易位 t(9;22),Bcr-Abl 表现为一种组成型活性酪氨酸激酶,通过激活细胞周期信号通路促进白血病的发生。Bcr(Bcr-CC)中的N端线圈寡聚化结构域介导了Bcr-Abl的持续性和致癌性激活,为治疗Bcr-Abl+白血病提供了一个抑制Bcr-Abl活性的治疗靶点。此前,我们证明了一种合理设计的 Bcr-CC 突变体 CCmut3 可通过优先与 Bcr-CC 寡聚而对 Bcr-Abl 的活性产生显性负效应。此外,我们还发现,与白血病特异性细胞穿透肽(CPP-CCmut3)连接可改善细胞内递送和活性。然而,与传统的小分子疗法相比,我们的全长 CPP-CCmut3 构建物(81 aa)具有固有的高度构象变异性和蛋白水解降解敏感性。在这里,我们针对 Bcr-CC 介导的 Bcr-Abl 组装设计了新一代 CCmut3 抑制剂,通过在 α-helix 2(CPP-CCmut3-st)中加入跨越 i 和 i + 7 位置的全烃主链来解决这些制约因素。我们利用计算建模和生物分子模拟来评估单链和双链 CCmut3 候选者的动态和结合能。我们进一步建立了一个截短系统的模型,该系统的特点是删除了α-螺旋 1 和柔性环连接体,众所周知,这两个部分会带来较高的构象变异性。为了研究 N 端环状 CPP 对模型稳定性和抑制剂活性的影响,我们还模拟了没有 CPP 的全长系统和截短系统、环化 CPP 系统和开放构型 CPP 系统,总共六个系统组成了我们的库。从这个库中,我们提出了先导叠肽候选化合物,并将合成和实验评估这些候选化合物,作为下一轮的 Bcr-Abl 抑制剂。
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来源期刊
CiteScore
5.80
自引率
9.10%
发文量
965
审稿时长
1.6 months
期刊介绍: An essential criterion for acceptance of research articles in the journal is that they provide new physical insight. Please refer to the New Physical Insights virtual issue on what constitutes new physical insight. Manuscripts that are essentially reporting data or applications of data are, in general, not suitable for publication in JPC B.
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