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Making routine native SAD a reality: lessons from beamline X06DA at the Swiss Light Source

机译:使常规的本地SAD成为现实:瑞士光源的Beamline X06DA的经验教训

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摘要

Native single-wavelength anomalous dispersion (SAD) is the most attractive de novo phasing method in macromolecular crystallography, as it directly utilizes intrinsic anomalous scattering from native crystals. However, the success of such an experiment depends on accurate measurements of the reflection intensities and therefore on careful data-collection protocols. Here, the low-dose, multiple-orientation data-collection protocol for native SAD phasing developed at beamline X06DA (PXIII) at the Swiss Light Source is reviewed, and its usage over the last four years on conventional crystals (>50 µm) is reported. Being experimentally very simple and fast, this method has gained popularity and has delivered 45 de novo structures to date (13 of which have been published). Native SAD is currently the primary choice for experimental phasing among X06DA users. The method can address challenging cases: here, native SAD phasing performed on a strept­avidin–biotin crystal with P21 symmetry and a low Bijvoet ratio of 0.6% is highlighted. The use of intrinsic anomalous signals as sequence markers for model building and the assignment of ions is also briefly described.
机译:天然单波长异常色散(SAD)是大分子晶体学中最有吸引力的从头定相方法,因为它直接利用了来自天然晶体的固有异常散射。但是,这种实验的成功取决于对反射强度的准确测量,因此取决于仔细的数据收集协议。在这里,对瑞士光源在光束线X06DA(PXIII)上开发的用于本地SAD相位调整的低剂量,多方向数据收集协议进行了回顾,并总结了过去四年在常规晶体(> 50µm)上的用法。报告。该方法在实验上非常简单且快速,已获得普及,迄今已交付了45种从头开始的结构(其中13种已发布)。当前,本机SAD是X06DA用户中进行实验定相的主要选择。该方法可以解决具有挑战性的情况:在这里,突出显示了对链霉亲和素-生物素晶体(具有P21对称性和0.6%的低Bijvoet比)进行的自然SAD相位确定。还简要介绍了使用固有异常信号作为序列标记进行模型构建和离子分配的过程。

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