Technical approaches of 3D reconstruction from protein complex using the mixture of differently stained images: providing suggestive evidence for improving its resolution.

Q3 Immunology and Microbiology
Yoon Ho Park, Myeong Seon Jeong, Gang San Song, Tak Gwonbaek, Young Kwan Kim, Hyun Suk Jung
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引用次数: 0

Abstract

Negative staining electron microscopy remains a valuable tool for structural biology, particularly for initial characterization of large protein complexes. However, the limitations of single staining methods often result in incomplete structural information. Here, we present a novel multi-stain approach for negative staining electron microscopy, applied to the structural analysis of the pyruvate dehydrogenase E2 (PDH E2) complex. By integrating data from three distinct staining agents (uranyl acetate, ammonium phosphotungstate, and ammonium molybdate) we demonstrate significant improvements in structural resolution and detail. Our method improved the resolution from a range of approximately 27-31 Å (observed with individual stains) to about 21.7 Å in the combined dataset. This enhancement facilitated a clearer visualization of the complex's icosahedral symmetry and allowed for a more precise determination of the overall shape and domain organization of the PDH E2 complex. The multi-stain approach revealed complementary structural information, with each stain highlighting different aspects of the protein complex. Uranyl acetate provided excellent overall contrast, while ammonium phosphotungstate and molybdate offered enhanced visibility of specific structural elements. The integration of these complementary data sets resulted in a more comprehensive structural model. Our findings suggest that this multi-stain negative staining approach can be a powerful tool for enhancing low-resolution structural information of large protein complexes, bridging the gap between initial characterization and high-resolution studies. This method holds promise for improving our understanding of challenging macromolecular assemblies and may serve as a valuable precursor to more advanced structural biology techniques.

利用不同染色图像的混合物从蛋白质复合体中进行三维重建的技术方法:为提高其分辨率提供暗示证据。
阴性染色电子显微镜仍然是结构生物学的一个有价值的工具,特别是对大蛋白质复合物的初始表征。然而,单一染色方法的局限性往往导致结构信息不完整。在这里,我们提出了一种新的阴性染色电镜多染色方法,应用于丙酮酸脱氢酶E2 (PDH E2)复合物的结构分析。通过整合三种不同染色剂(醋酸铀酰、磷钨酸铵和钼酸铵)的数据,我们证明了结构分辨率和细节的显著改进。我们的方法将分辨率从大约27-31 Å(单独染色观察)提高到大约21.7 Å。这种增强有助于更清晰地可视化复合物的二十面体对称性,并允许更精确地确定PDH E2复合物的整体形状和结构域组织。多染色方法揭示了互补的结构信息,每个染色突出蛋白质复合物的不同方面。醋酸铀酰提供了出色的整体对比度,而磷钨酸铵和钼酸铵提供了增强的特定结构元素的可见性。这些互补数据集的整合产生了一个更全面的结构模型。我们的研究结果表明,这种多染色阴性染色方法可以成为增强大蛋白复合物低分辨率结构信息的有力工具,弥合了初始表征和高分辨率研究之间的差距。这种方法有望提高我们对具有挑战性的大分子组装的理解,并可能成为更先进的结构生物学技术的有价值的先驱。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Applied Microscopy
Applied Microscopy Immunology and Microbiology-Applied Microbiology and Biotechnology
CiteScore
3.40
自引率
0.00%
发文量
10
审稿时长
10 weeks
期刊介绍: Applied Microscopy is a peer-reviewed journal sponsored by the Korean Society of Microscopy. The journal covers all the interdisciplinary fields of technological developments in new microscopy methods and instrumentation and their applications to biological or materials science for determining structure and chemistry. ISSN: 22875123, 22874445.
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