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CryoSeek:一种利用冷冻电子显微镜进行生物实体发现的策略。

CryoSeek: A strategy for bioentity discovery using cryoelectron microscopy.

机构信息

Beijing Frontier Research Center for Biological Structures, State Key Laboratory of Membrane Biology, Tsinghua-Peking Joint Center for Life Sciences, School of Life Sciences, Tsinghua University, Beijing 100084, China.

Westlake Laboratory of Life Sciences and Biomedicine, Key Laboratory of Structural Biology of Zhejiang Province, School of Life Sciences, Westlake University, Hangzhou 310024, Zhejiang, China.

出版信息

Proc Natl Acad Sci U S A. 2024 Oct 15;121(42):e2417046121. doi: 10.1073/pnas.2417046121. Epub 2024 Oct 9.

Abstract

Structural biology is experiencing a paradigm shift from targeted structural determination to structure-guided discovery of previously uncharacterized bioentities. We employed cryoelectron microscopy (cryo-EM) to analyze filtered water samples collected from the Tsinghua Lotus Pond. Here, we report the structural determination and characterization of two highly similar helical fibrils, named TLP-1a and TLP-1b, each approximately 8 nm in diameter with a 15-Å wide tunnel. These fibrils are assembled from a similar protein protomer, whose structure was conveniently automodeled in CryoNet. The protomer structure does not match any available experimental structures, but shares the same fold as many predicted structures of unknown functions. The amino-terminal β strand of protomer n + 4 inserts into a cleft in protomer n to complete an immunoglobulin (Ig)-like domain. This packing mechanism, known as donor-strand exchange (DSE), has been observed in several bacterial pilus assemblies, wherein the donor is protomer n + 1. Despite distinct shape and thickness, this reminiscence suggests that TLP-1a/b fibrils may represent uncharacterized bacterial pili. Our study demonstrates an emerging paradigm in structural biology, where high-resolution structural determination precedes and drives the identification and characterization of completely unknown objects.

摘要

结构生物学正在经历从靶向结构测定到结构引导的未表征生物实体发现的范式转变。我们使用冷冻电子显微镜(cryo-EM)分析了从清华荷塘采集的过滤水样。在这里,我们报告了两种高度相似的螺旋纤维的结构测定和表征,分别命名为 TLP-1a 和 TLP-1b,直径约为 8nm,宽 15Å。这些纤维由类似的蛋白质原体组装而成,其结构在 CryoNet 中方便地自动建模。原体结构与任何可用的实验结构都不匹配,但与许多预测结构具有相同的折叠,这些预测结构具有未知功能。原体 n + 4 的氨基末端β链插入到原体 n 的裂隙中,完成免疫球蛋白(Ig)样结构域。这种包装机制称为供体链交换(DSE),已在几种细菌菌毛组装中观察到,其中供体是原体 n + 1。尽管形状和厚度明显不同,但这种相似之处表明 TLP-1a/b 纤维可能代表未表征的细菌菌毛。我们的研究展示了结构生物学中的一个新兴范例,其中高分辨率结构测定先于并推动了完全未知对象的识别和表征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7725/11494351/1f822acd3945/pnas.2417046121fig01.jpg

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