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ACCORD: an assessment tool to determine the orientation of homodimeric coiled-coils

机译:协议:评估工具,用于确定同源二聚体卷绕线圈的方向

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The coiled-coil (CC) domain is a very important structural unit of proteins that plays critical roles in various biological functions. The major oligomeric state of CCs is a dimer, which can be either parallel or antiparallel. The orientation of each α-helix in a CC domain is critical for the molecular function of CC-containing proteins, but cannot be determined easily by sequence-based prediction. We developed a biochemical method for assessing differences between parallel and antiparallel CC homodimers and named it ACCORD (Assessment tool for homodimeric Coiled-Coil ORientation Decision). To validate this technique, we applied it to 15 different CC proteins with known structures, and the ACCORD results identified these proteins well, especially with long CCs. Furthermore, ACCORD was able to accurately determine the orientation of a CC domain of unknown directionality that was subsequently confirmed by X-ray crystallography and small angle X-ray scattering. Thus, ACCORD can be used as a tool to determine CC directionality to supplement the results of in silico prediction.
机译:卷绕线圈(CC)结构域是一种非常重要的蛋白质结构单元,其在各种生物学功能中起重要作用。 CCS的主要低聚状态是二聚体,其可以是平行的或反平行的。 CC结构域中的每个α-Helix的取向对于含CC蛋白的分子函数至关重要,但不能通过基于序列的预测来容易地确定。我们开发了一种生化方法,用于评估平行和反平行CC同源体之间的差异并命名为QUACT(同型卷轴线圈方向决定的评估工具)。为了验证该技术,我们用已知结构施加到15种不同的CC蛋白,并且符合结果鉴定了这些蛋白质,特别是长CC。此外,符合可以准确地确定随后通过X射线晶体学和小角度X射线散射证实的未知方向性的CC结构域的取向。因此,可以用作确定CC方向性以补充硅预测结果的工具。

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