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用于高通量筛选的蛋白质晶体从琼脂糖基座到微筛网的声学转移

Acoustic transfer of protein crystals from agarose pedestals to micromeshes for high-throughput screening.

作者信息

Cuttitta Christina M, Ericson Daniel L, Scalia Alexander, Roessler Christian G, Teplitsky Ella, Joshi Karan, Campos Olven, Agarwal Rakhi, Allaire Marc, Orville Allen M, Sweet Robert M, Soares Alexei S

机构信息

Office of Educational Programs, Brookhaven National Laboratory, Upton, NY 11973-5000, USA.

Photon Sciences Directorate, Brookhaven National Laboratory, Upton, NY 11973-5000, USA.

出版信息

Acta Crystallogr D Biol Crystallogr. 2015 Jan 1;71(Pt 1):94-103. doi: 10.1107/S1399004714013728.

Abstract

Acoustic droplet ejection (ADE) is an emerging technology with broad applications in serial crystallography such as growing, improving and manipulating protein crystals. One application of this technology is to gently transfer crystals onto MiTeGen micromeshes with minimal solvent. Once mounted on a micromesh, each crystal can be combined with different chemicals such as crystal-improving additives or a fragment library. Acoustic crystal mounting is fast (2.33 transfers s(-1)) and all transfers occur in a sealed environment that is in vapor equilibrium with the mother liquor. Here, a system is presented to retain crystals near the ejection point and away from the inaccessible dead volume at the bottom of the well by placing the crystals on a concave agarose pedestal (CAP) with the same chemical composition as the crystal mother liquor. The bowl-shaped CAP is impenetrable to crystals. Consequently, gravity will gently move the crystals into the optimal location for acoustic ejection. It is demonstrated that an agarose pedestal of this type is compatible with most commercially available crystallization conditions and that protein crystals are readily transferred from the agarose pedestal onto micromeshes with no loss in diffraction quality. It is also shown that crystals can be grown directly on CAPs, which avoids the need to transfer the crystals from the hanging drop to a CAP. This technology has been used to combine thermolysin and lysozyme crystals with an assortment of anomalously scattering heavy atoms. The results point towards a fast nanolitre method for crystal mounting and high-throughput screening.

摘要

声滴喷射(ADE)是一项新兴技术,在串行晶体学中有着广泛应用,比如用于生长、改善和操控蛋白质晶体。该技术的一个应用是将晶体以最少的溶剂轻柔地转移到MiTeGen微网上。一旦安装在微网上,每个晶体都可以与不同的化学物质结合,如晶体改善添加剂或片段文库。声控晶体安装速度快(2.33次转移每秒),并且所有转移都在与母液处于蒸汽平衡的密封环境中进行。在此,提出了一种系统,通过将晶体放置在与晶体母液化学成分相同的凹形琼脂糖基座(CAP)上,使晶体保留在喷射点附近,远离孔底部难以触及的死体积。碗状的CAP对晶体不可穿透。因此,重力会将晶体轻柔地移动到声滴喷射的最佳位置。结果表明,这种类型的琼脂糖基座与大多数市售结晶条件兼容,并且蛋白质晶体能够很容易地从琼脂糖基座转移到微网上,而不会损失衍射质量。还表明晶体可以直接在CAP上生长,这避免了将晶体从悬滴转移到CAP的需要。该技术已用于将嗜热菌蛋白酶和溶菌酶晶体与各种反常散射重原子结合。这些结果指向一种用于晶体安装和高通量筛选的快速纳升方法。

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