Journal:CHEMBIOINT:1
From Proteopedia
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| - | All crystal structures of AChE deposited in the PDB (https://www.rcsb.org) display dimers in which the monomers associate through an antiparallel four-helix bundle. With respect to BChE, crystal structures have been obtained only for monomeric forms of hBChE. In the first hBChE crystal structure obtained (PDB ID [[1p0i]]), of partially glycosylated enzyme expressed in CHO cells, dimers assembling via a <scene name='81/817522/Cv/6'>four-helix bundle were not observed</scene>. Subsequently, however, a <scene name='81/817522/Cv/5'>crystal structure in which the dimers did assemble via a four-helix bundle</scene> (PDB ID [[4aqd]]) was obtained for fully glycosylated hBChE expressed in ''Drosophila S2'' cells. This dissimilarity of the two crystal structures reveals the high sensitivity of hBChE dimerization to the expression system and crystallization conditions. | + | All crystal structures of AChE deposited in the PDB (https://www.rcsb.org) display dimers in which the monomers associate through an antiparallel four-helix bundle. With respect to BChE, crystal structures have been obtained only for monomeric forms of hBChE. In the first hBChE crystal structure obtained (PDB ID [[1p0i]]), of partially glycosylated enzyme expressed in CHO cells, dimers assembling via a <scene name='81/817522/Cv/6'>four-helix bundle were not observed</scene>. Subsequently, however, a <scene name='81/817522/Cv/5'>crystal structure in which the dimers did assemble via a four-helix bundle</scene> (PDB ID [[4aqd]]) was obtained for fully glycosylated hBChE expressed in ''Drosophila S2'' cells. This dissimilarity of the two crystal structures reveals the high sensitivity of hBChE dimerization to the expression system and crystallization conditions. <scene name='81/817522/Cv/8'>TextToBeDisplayed</scene> |
This study was supported by Russian Foundation for Basic Research (project №19-03-00043). | This study was supported by Russian Foundation for Basic Research (project №19-03-00043). | ||
Revision as of 11:12, 2 June 2019
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