Janiak-Spens F, West A H
Department of Chemistry and Biochemistry, University of Oklahoma, Norman, OK 73019, USA.
Mol Microbiol. 2000 Jul;37(1):136-44. doi: 10.1046/j.1365-2958.2000.01973.x.
The histidine-containing phosphotransfer (HPt) protein YPD1 is an osmoregulatory protein in yeast that facilitates phosphoryl transfer between the two response regulator domains associated with SLN1 and SSK1. Based on the crystal structure of YPD1 and the sequence alignment of YPD1 with other HPt domains, we site-specifically engineered and purified several YPD1 mutants in order to examine the role of conserved residues surrounding the phosphorylatable histidine (H64). Substitution of the positively charged residues K67 and R90 destabilized the phospho-imidazole linkage, whereas substitution of G68 apparently reduces accessibility of H64. These findings, together with the effect of other mutations, provide biochemical support of the proposed functional roles of conserved amino acid residues of HPt domains.
含组氨酸的磷酸转移(HPt)蛋白YPD1是酵母中的一种渗透调节蛋白,它促进与SLN1和SSK1相关的两个应答调节结构域之间的磷酸转移。基于YPD1的晶体结构以及YPD1与其他HPt结构域的序列比对,我们定点设计并纯化了多个YPD1突变体,以研究可磷酸化组氨酸(H64)周围保守残基的作用。带正电荷的残基K67和R90的取代使磷酸 - 咪唑键不稳定,而G68的取代明显降低了H64的可及性。这些发现,连同其他突变的影响,为HPt结构域保守氨基酸残基的拟议功能作用提供了生化支持。