Journal:IUCrJ:S2052252521008125

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We follow the increase of the CEF occupancy in the catalytic cleft of BlaC from 5 ms to 50 ms after mixing with CEF by XFEL based MISC experiments. At the edge of the crystal, almost all active BlaC subunits (B and D) are bound to CEF already at 5 ms. In the center the BlaC-CEF complex concentration is 0.21 mmol/L (2.7 % of the total concentration of B and D subunits in the crystal), although the CEF concentration delivered by diffusion is already 35 mmol/L (which is the mentioned 23 % of the outside CEF concentration but 5.5 times the stoichiometric concentration). The situation changes completely at 30 ms, where almost 100 % occupancy is reached everywhere in the crystal which is in accordance with earlier results (Olmos ''et al.,'' 2018)<ref>PMID:29848358</ref>, and with the occupancy at Δtm = 50 ms reported here (see movie below)
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We follow the increase of the CEF occupancy in the catalytic cleft of BlaC from 5 ms to 50 ms after mixing with CEF by XFEL based MISC experiments. At the edge of the crystal, almost all active BlaC subunits (B and D) are bound to CEF already at 5 ms. In the center the BlaC-CEF complex concentration is 0.21 mmol/L (2.7 % of the total concentration of B and D subunits in the crystal), although the CEF concentration delivered by diffusion is already 35 mmol/L (which is 23 % of the outside CEF concentration but 5.5 times the stoichiometric concentration). The situation changes completely at 30 ms, where almost 100 % occupancy is reached everywhere in the crystal which is in accordance with earlier results (Olmos ''et al.,'' 2018)<ref>PMID:29848358</ref>, and with the occupancy at Δtm = 50 ms reported here (see movie below)
<qt>file=Image:Supplementary_movie_2a.mp4|autoplay=false|width=400|height=400|controller=true|loop=false</qt><br/>
<qt>file=Image:Supplementary_movie_2a.mp4|autoplay=false|width=400|height=400|controller=true|loop=false</qt><br/>

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