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用于蛋白质结晶的逆流扩散装置中沉淀剂的平衡

Equilibration of precipitants in a counter-diffusion apparatus for protein crystallization.

作者信息

Kober Umberto A, Ogbuoji Ebuka A, Hutchinson John A, Mueser Timothy C, Schall Constance A

机构信息

University of Toledo, Chemical Engineering, 2801 West Bancroft Street, Toledo, OH 43606, USA.

University of Toledo, Chemistry and Biochemistry, 2801 West Bancroft Street, Toledo, OH 43606, USA.

出版信息

J Appl Crystallogr. 2023 Jun 23;56(Pt 4):1057-1065. doi: 10.1107/S1600576723004958. eCollection 2023 Aug 1.

Abstract

A cost-effective capillary dialysis apparatus (Toledo Capillary Box, TCB) developed for biomacromolecule crystal growth in microgravity and unit gravity environments can provide slow equilibration between the precipitant reservoir and capillary solutions, nurturing growth of neutron-diffraction-quality crystals. Under microgravity conditions, mass transfer of precipitants and biomacro-mol-ecules occurs under diffusion-controlled conditions, promoting slow growth and suppressing defect formation. The equilibration of common precipitants (polyethyl-ene glycol and salts such as ammonium sulfate) between capillary and reservoir solutions was measured for capillaries oriented horizontally or vertically with respect to the gravitational field at unit gravity. Precipitants equilibrated less rapidly in the vertical orientation when capillary solution densities were lower than those of the reservoir solutions. A plug filled with agarose gel was introduced in the TCB apparatus for salt precipitants since salts often exhibit relatively high free diffusion. Equilibration of the capillaries with reservoir solutions was significantly delayed for many of the salt precipitants tested. Analytical and semi-analytical models allow the prediction of precipitant equilibration of capillary and reservoir solutions under diffusion-controlled transport and show good agreement with experimental results.

摘要

一种为在微重力和单位重力环境下进行生物大分子晶体生长而开发的具有成本效益的毛细管透析装置(托莱多毛细管盒,TCB),可以使沉淀剂储液器和毛细管溶液之间缓慢达到平衡,从而培育出具有中子衍射质量的晶体。在微重力条件下,沉淀剂和生物大分子的传质在扩散控制条件下发生,促进晶体缓慢生长并抑制缺陷形成。在单位重力下,针对相对于重力场水平或垂直取向的毛细管,测量了毛细管与储液器溶液之间常见沉淀剂(聚乙二醇和硫酸铵等盐类)的平衡情况。当毛细管溶液密度低于储液器溶液密度时,沉淀剂在垂直取向时达到平衡的速度较慢。由于盐类通常具有相对较高的自由扩散率,因此在TCB装置中引入了一个填充有琼脂糖凝胶的塞子用于盐沉淀剂。对于许多测试的盐沉淀剂,毛细管与储液器溶液的平衡明显延迟。分析模型和半分析模型可以预测在扩散控制传输下毛细管和储液器溶液中沉淀剂的平衡情况,并且与实验结果显示出良好的一致性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1784/10405592/ef6c9ed8cc78/j-56-01057-fig1.jpg

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