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关于伪接触位移在金属蛋白结构测定中的应用。

On the use of pseudocontact shifts in the structure determination of metalloproteins.

作者信息

Jensen Malene Ringkjøbing, Hansen D Flemming, Ayna Umit, Dagil Robert, Hass Mathias A S, Christensen Hans E M, Led Jens J

机构信息

Department of Chemistry, University of Copenhagen, Universitetsparken 5, DK-2100 Copenhagen Ø, Denmark.

出版信息

Magn Reson Chem. 2006 Mar;44(3):294-301. doi: 10.1002/mrc.1771.

Abstract

The utility of pseudocontact shifts in the structure refinement of metalloproteins has been evaluated using a native, paramagnetic Cu(2+) metalloprotein, plastocyanin from Anabaena variabilis (A.v.), as a model protein. First, the possibility of detecting signals of nuclei spatially close to the paramagnetic metal ion is investigated using the WEFT pulse sequence in combination with the conventional TOCSY and (1)H-(15)N HSQC sequences. Second, the importance of the electrical charge of the metal ion for the determination of correct pseudocontact shifts from the obtained chemical shifts is evaluated. Thus, using both the Cu(+) plastocyanin and Cd(2+)-substituted plastocyanin as the diamagnetic references, it is found that the Cd(2+)-substituted protein with the same electrical charge of the metal ion as the paramagnetic Cu(2+) plastocyanin provides the most appropriate diamagnetic reference signals. Third, it is found that reliable pseudocontact shifts cannot be obtained from the chemical shifts of the (15)N nuclei in plastocyanin, most likely because these shifts are highly dependent on even minor differences in the structure of the paramagnetic and diamagnetic proteins. Finally, the quality of the obtained (1)H pseudocontact shifts, as well as the possibility of improving the accuracy of the obtained structure, is demonstrated by incorporating the shifts as restraints in a refinement of the solution structure of A.v. plastocyanin. It is found that incorporation of the pseudocontact shifts enhances the precision of the structure in regions with only few NOE restraints and improves the accuracy of the overall structure.

摘要

已使用天然的顺磁性铜(II)金属蛋白——可变鱼腥藻(A.v.)的质体蓝素作为模型蛋白,评估了伪接触位移在金属蛋白结构优化中的效用。首先,结合传统的全相关谱(TOCSY)和氢-氮异核单量子相干(1H-15N HSQC)序列,使用WEFT脉冲序列研究检测空间上靠近顺磁性金属离子的原子核信号的可能性。其次,评估金属离子电荷对于从所得化学位移确定正确伪接触位移的重要性。因此,以铜(I)质体蓝素和镉(II)取代的质体蓝素作为抗磁性参考,发现与顺磁性铜(II)质体蓝素具有相同金属离子电荷的镉(II)取代蛋白提供了最合适的抗磁性参考信号。第三,发现无法从质体蓝素中15N原子核的化学位移获得可靠的伪接触位移,最可能的原因是这些位移高度依赖于顺磁性和抗磁性蛋白结构中即使是微小的差异。最后,通过将这些位移作为约束条件纳入可变鱼腥藻质体蓝素溶液结构的优化中,证明了所得氢伪接触位移的质量以及提高所得结构准确性的可能性。结果发现,纳入伪接触位移可提高在只有少量核Overhauser效应(NOE)约束的区域中结构的精度,并提高整体结构的准确性。

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