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6PQ4

LCP-embedded Proteinase K treated with lipase

Summary for 6PQ4
Entry DOI10.2210/pdb6pq4/pdb
DescriptorProteinase K, CALCIUM ION, NITRATE ION, ... (4 entities in total)
Functional Keywordsproteinase k, lcp, lipase, microed, hydrolase
Biological sourceParengyodontium album (Engyodontium album, Tritirachium album)
Total number of polymer chains1
Total formula weight29072.94
Authors
Bu, G.,Zhu, L.,Jing, L.,Shi, D.,Gonen, T.,Liu, W.,Nannenga, B.L. (deposition date: 2019-07-08, release date: 2020-08-05, Last modification date: 2024-10-09)
Primary citationZhu, L.,Bu, G.,Jing, L.,Shi, D.,Lee, M.Y.,Gonen, T.,Liu, W.,Nannenga, B.L.
Structure Determination from Lipidic Cubic Phase Embedded Microcrystals by MicroED.
Structure, 28:1149-1159.e4, 2020
Cited by
PubMed Abstract: The lipidic cubic phase (LCP) technique has proved to facilitate the growth of high-quality crystals that are otherwise difficult to grow by other methods. However, the crystal size optimization process could be time and resource consuming, if it ever happens. Therefore, improved techniques for structure determination using these small crystals is an important strategy in diffraction technology development. Microcrystal electron diffraction (MicroED) is a technique that uses a cryo-transmission electron microscopy to collect electron diffraction data and determine high-resolution structures from very thin micro- and nanocrystals. In this work, we have used modified LCP and MicroED protocols to analyze crystals embedded in LCP converted by 2-methyl-2,4-pentanediol or lipase, including Proteinase K crystals grown in solution, cholesterol crystals, and human adenosine A receptor crystals grown in LCP. These results set the stage for the use of MicroED to analyze microcrystalline samples grown in LCP, especially for those highly challenging membrane protein targets.
PubMed: 32735770
DOI: 10.1016/j.str.2020.07.006
PDB entries with the same primary citation
Experimental method
ELECTRON CRYSTALLOGRAPHY (2 Å)
Structure validation

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