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Orientation and Oligomerization Specificity of the Bcr Coiled-Coil Oligomerization Domain

机译:Bcr盘绕低聚域的取向和低聚特异性

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The Bcr Oligomerization domain,from the Bcr-Abl oncoprotein,is an attractive therapeutic target for treating leukemias because it is required for cellular transformation.The domain homodimerizes via an antiparallel coiled coil with an adjacent short,helical swap domain.Inspection of the coiled-coil sequence does not reveal obvious determinants of helix-orientation specificity,raising the possibility that the antiparallel orientation preference and/or the dimeric Oligomerization state are due to interactions of the swap domains.To better understand how structural specificity is encoded in Bcr,coiled-coil constructs containing either an N-or C-terminal cysteine were synthesized without the swap domain.When cross-linked to adopt exclusively parallel or antiparallel orientations,these showed similar circular dichroism spectra.Both constructs formed coiled-coil dimers,but the antiparallel construct was approx 16 deg C more stable than the parallel to thermal denaturation.Equilibrium disulfide-exchange studies confirmed that the isolated coiled-coil homodimer shows a very strong preference for the antiparallel orientation.We conclude that the orientation and Oligomerization preferences of Bcr are not caused by the presence of the swap domains,but rather are directly encoded in the coiled-coil sequence.We further explored possible determinants of structural specificity by mutating residues in the d position of the coiled-coil core.Some of the mutations caused a change in orientation specificity,and all of the mutations led to the formation of higher-order oligomers.In the absence of the swap domain,these residues play an important role in disfavoring alternate states and are especially important for encoding dimeric Oligomerization specificity.
机译:来自Bcr-Abl癌蛋白的Bcr寡聚化结构域是治疗白血病的有吸引力的治疗靶标,因为它是细胞转化所必需的。该结构域通过反平行卷曲螺旋与相邻的短螺旋交换结构域同源二聚。卷曲序列不能揭示明显的螺旋取向特异性决定因素,从而增加了反平行取向偏好和/或二聚体低聚状态是由于交换域相互作用引起的可能性。为了更好地理解Bcr中如何编码结构特异性,合成了一个含有N或C端半胱氨酸的线圈结构,没有交换结构域。当交联以仅采用平行​​或反平行方向时,它们显示出相似的圆二色性光谱。两种结构均形成了线圈螺旋二聚体,但反平行结构比平行于热变性的温度稳定约16摄氏度。交换研究证实,分离的卷曲螺旋同源二聚体显示出对反平行方向的强烈偏爱。我们得出的结论是,Bcr的方向和寡聚偏好不是由交换域的存在引起的,而是直接编码在Bcr中。我们进一步探索了可能通过改变卷曲螺旋核心d位置的残基来确定结构特异性的决定因素。一些突变引起定向特异性的改变,所有突变都导致形成更高的在不存在交换域的情况下,这些残基在不利于交替状态方面起着重要作用,并且对于编码二聚体寡聚特异性而言尤其重要。

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