Department of Pharmaceutics and Pharmaceutical Chemistry, College of Pharmacy, University of Utah, Salt Lake City, Utah 84108, United States.
Mol Pharm. 2012 Jan 1;9(1):187-95. doi: 10.1021/mp200461s. Epub 2011 Dec 12.
The oncoprotein Bcr-Abl drives aberrant downstream activity through trans-autophosphorylation of homo-oligomers in chronic myelogenous leukemia (CML).(1, 2) The formation of Bcr-Abl oligomers is achieved through the coiled-coil domain at the N-terminus of Bcr.(3, 4) We have previously reported a modified version of this coiled-coil domain, CCmut2, which exhibits disruption of Bcr-Abl oligomeric complexes and results in decreased proliferation of CML cells and induction of apoptosis.(5) A major contributing factor to these enhanced capabilities is the destabilization of the CCmut2 homodimers, increasing the availability to interact with and inhibit Bcr-Abl. Here, we included an additional mutation (K39E) that could in turn further destabilize the mutant homodimer. Incorporation of this modification into CCmut2 (C38A, S41R, L45D, E48R, Q60E) generated what we termed CCmut3, and resulted in further improvements in the binding properties with the wild-type coiled-coil domain representative of Bcr-Abl [corrected]. A separate construct containing one revert mutation, CCmut4, did not demonstrate improved oligomeric properties and indicated the importance of the L45D mutation. CCmut3 demonstrated improved oligomerization via a two-hybrid assay as well as through colocalization studies, in addition to showing similar biologic activity as CCmut2. The improved binding between CCmut3 and the Bcr-Abl coiled-coil may be used to redirect Bcr-Abl to alternative subcellular locations with interesting therapeutic implications.
致癌蛋白 Bcr-Abl 通过慢性髓细胞白血病 (CML) 中同源寡聚体的反式自动磷酸化驱动异常下游活性。(1, 2) Bcr 的 N 端卷曲螺旋域实现了 Bcr-Abl 寡聚体的形成。(3, 4) 我们之前报道了这种卷曲螺旋域的一种改良版本 CCmut2,它表现出 Bcr-Abl 寡聚复合物的破坏,导致 CML 细胞增殖减少和凋亡诱导。(5) 这些增强能力的一个主要因素是 CCmut2 同源二聚体的不稳定性增加,从而增加了与 Bcr-Abl 相互作用和抑制的可用性。在这里,我们加入了一个额外的突变 (K39E),这反过来又可以进一步破坏突变的同源二聚体。将这种修饰纳入 CCmut2 (C38A、S41R、L45D、E48R、Q60E) 产生了我们称之为 CCmut3 的物质,并且进一步改善了与野生型卷曲螺旋域代表 Bcr-Abl 的结合特性。包含一个回复突变的单独构建体 CCmut4 没有显示出改善的寡聚性质,这表明 L45D 突变的重要性。CCmut3 通过双杂交测定以及共定位研究显示出改善的寡聚化,除了显示出与 CCmut2 相似的生物学活性外。CCmut3 与 Bcr-Abl 卷曲螺旋之间改善的结合可能用于将 Bcr-Abl 重定向到具有有趣治疗意义的替代亚细胞位置。