Look at Amon peak in map?

On Fri, 26 Feb 2021 at 10:40, Gregor Hagelüken <[email protected]>
wrote:

> To follow up: I forgot to mention that there is no Mg2+ in the condition.
> We have PEG4K, Sodium citrate, Ammonium sulfate.
> Cheers,
> Gregor
>
>
> -----
> PD Dr. Gregor Hagelueken
> Institute of Structural Biology
>
> Biomedical Center (BMZ)
> Building 13, Rm 2G 022/023
> University of Bonn
> Venusberg Campus 1
> 53127 Bonn, Germany
>
> Phone: +49 228 287-51200
>
> WWW:  http://www.isb.uni-bonn.de/
> -----
> On 26. Feb 2021, 11:14 +0100, Gregor Hagelüken <[email protected]>,
> wrote:
>
> Hi,
>
> We recently solved a structure where two citrate molecules from the
> crystallisation condition are bound to the protein. They are nicely defined
> in the electron density. There is some difference density between the two
> citrates that looks like a water molecule:
>
> https://www.dropbox.com/s/9hxyty5f7udlk6q/Screenshot%202021-02-26%20at%2010.43.13.png?dl=0
>
> So, we have built a water molecule into the difference density. The
> “water” has a roughly tetrahedral coordination sphere with two H-bond
> donors and two H-bond acceptors around it, but the distances are too short
> (around 1.8 Å):
>
> https://www.dropbox.com/s/5pgxlvt72hngjty/Screenshot%202021-02-26%20at%2010.38.44.png?dl=0
>
> https://www.dropbox.com/s/mcqteu5ibu265lo/Screenshot%202021-02-26%20at%2010.41.22.png?dl=0
>
> We have thought about sodium ions. But looking at citrate structures in
> the CSD, I found that the distances are also too short for sodium.
> If anybody has an idea what might sit between these two citrate molecules,
> please let me know!
> I am of course happy to give any further information.
>
> Cheers,
> Gregor
>
> -----
> PD Dr. Gregor Hagelueken
> Institute of Structural Biology
>
> Biomedical Center (BMZ)
> Building 13, Rm 2G 022/023
> University of Bonn
> Venusberg Campus 1
> 53127 Bonn, Germany
>
> Phone: +49 228 287-51200
>
> WWW:  http://www.isb.uni-bonn.de/
> -----
>
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