Beyersdorf Matthew S, Sircar Ria, Lookadoo Daniel B, Bottone Cory J, Lynch Michael J, Crane Brian R, Halkides Christopher J
Department of Chemistry and Biochemistry, The University of North Carolina Wilmington, Wilmington, North Carolina, 28403.
Department of Chemistry and Chemical Biology, Physical Sciences Building, Cornell University, Ithaca, New York, 14853.
Protein Sci. 2017 Aug;26(8):1547-1554. doi: 10.1002/pro.3180. Epub 2017 May 14.
Phosphorylation of CheY promotes association with the flagellar motor and ultimately controls the directional bias of the motor. However, biochemical studies of activated CheY-phosphate have been challenging due to the rapid hydrolysis of the aspartyl-phosphate in vitro. An inert analog of Tm CheY-phosphate, phosphono-CheY, was synthesized by chemical modification and purified by cation-exchange chromatography. Changes in HPLC retention times, chemical assays for phosphate and free thiol, and mass spectrometry experiments demonstrate modification of Cys54 with a phosphonomethyl group. Additionally, a crystal structure showed electron density for the phosphonomethyl group at Cys54, consistent with a modification at that position. Subsequent biochemical experiments confirmed that protein crystals were phosphono-CheY. Isothermal titration calorimetry and fluorescence polarization binding assays demonstrated that phosphono-CheY bound a peptide derived from FliM, a native partner of CheY-phosphate, with a dissociation constant of ∼29 µM, at least sixfold more tightly than unmodified CheY. Taken together these results suggest that Tm phosphono-CheY is a useful and unique analog of Tm CheY-phosphate.
CheY的磷酸化促进其与鞭毛马达的结合,并最终控制马达的方向偏好。然而,由于体外天冬氨酰磷酸的快速水解,对活化的磷酸化CheY进行生化研究一直具有挑战性。通过化学修饰合成了嗜热栖热菌(Tm)磷酸化CheY的惰性类似物膦酰基-CheY,并通过阳离子交换色谱法进行纯化。高效液相色谱(HPLC)保留时间的变化、磷酸盐和游离巯基的化学分析以及质谱实验表明,半胱氨酸54(Cys54)被膦酰甲基修饰。此外,晶体结构显示了Cys54处膦酰甲基的电子密度,与该位置的修饰一致。随后的生化实验证实蛋白质晶体为膦酰基-CheY。等温滴定量热法和荧光偏振结合试验表明,膦酰基-CheY与磷酸化CheY的天然结合伴侣FliM衍生的肽结合,解离常数约为29 μM,比未修饰的CheY紧密至少六倍。综上所述,这些结果表明嗜热栖热菌膦酰基-CheY是嗜热栖热菌磷酸化CheY一种有用且独特的类似物。