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Successful data recovery from oscillation photographs containing strong polycrystalline diffraction rings from an unknown small-molecule contaminant: preliminary structure solution of Salmonella typhimurium pyridoxal kinase (PdxK)

机译:从含有未知多分子污染物的强多晶衍射环的振荡照片中成功恢复数据:鼠伤寒沙门氏菌吡x醛激酶(PdxK)的初步结构解决方案

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摘要

Pyridoxal kinase (PdxK; EC 2.7.1.35) belongs to the phosphotransferase family of enzymes and catalyzes the conversion of the three active forms of vitamin B-6, pyridoxine, pyridoxal and pyridoxamine, to their phosphorylated forms and thereby plays a key role in pyridoxal 5 `-phosphate salvage. In the present study, pyridoxal kinase from Salmonella typhimurium was cloned and overexpressed in Escherichia coli, purified using Ni-NTA affinity chromatography and crystallized. X-ray diffraction data were collected to 2.6 angstrom resolution at 100 K. The crystal belonged to the primitive orthorhombic space group P2(1)2(1)2(1), with unitcell parameters a = 65.11, b = 72.89, c = 107.52 angstrom. The data quality obtained by routine processing was poor owing to the presence of strong diffraction rings caused by a polycrystalline material of an unknown small molecule in all oscillation images. Excluding the reflections close to powder/polycrystalline rings provided data of sufficient quality for structure determination. A preliminary structure solution has been obtained by molecular replacement with the Phaser program in the CCP4 suite using E. coli pyridoxal kinase (PDB entry 2ddm) as the phasing model. Further refinement and analysis of the structure are likely to provide valuable insights into catalysis by pyridoxal kinases.
机译:吡rid醛激酶(PdxK; EC 2.7.1.35)属于酶的磷酸转移酶家族,可催化​​三种活性形式的维生素B-6(吡ido醇,吡ido醛和吡ido胺)转化为其磷酸化形式,从而在吡ido醛中起关键作用5`-磷酸盐打捞。在本研究中,鼠伤寒沙门氏菌的吡ido醛激酶被克隆并在大肠杆菌中过表达,使用Ni-NTA亲和层析纯化并结晶。 X射线衍射数据在100 K下以2.6埃的分辨率收集。该晶体属于原始正交晶体空间群P2(1)2(1)2(1),单位晶胞参数a = 65.11,b = 72.89,c = 107.52埃。由于在所有振荡图像中存在未知小分子多晶材料引起的强衍射环,因此通过常规处理获得的数据质量很差。排除靠近粉末/多晶环的反射,可提供足够质量的数据用于结构确定。通过使用大肠杆菌吡ido醛激酶(PDB条目2ddm)作为定相模型,用CCP4套件中的Phaser程序进行分子置换,获得了初步结构解决方案。结构的进一步细化和分析可能会为吡x醛激酶催化提供有价值的见解。

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