Phillips Robert S, Miles Edith W, Holtermann Georg, Goody Roger S
Department of Chemistry, University of Georgia, Athens, Georgia 30602-2556, USA.
Biochemistry. 2005 May 31;44(21):7921-8. doi: 10.1021/bi050056b.
The effect of hydrostatic pressure on the tryptophan (Trp) synthase alpha2beta2 complex from Salmonella typhimurium has been investigated. Trp synthase has been shown previously to exhibit low-activity (open) and high-activity (closed) conformations. The equilibrium between the open and closed conformations of Trp synthase has been found to be affected by a wide range of variables, including alpha-subunit ligands, monovalent cations, organic solvents, pH, and temperature. The absorption spectrum of the Trp synthase-L-Ser complex shows an increase in absorption of the 423 nm band of the external aldimine, which is a characteristic of the open conformation, as hydrostatic pressure is increased from 1 to 2000 bar. The deltaV(o) and K(o) for the equilibrium between the closed and open conformations of the Trp synthase-L-Ser complex are -126 mL/mol and 0.12 for the Na+ form and -171 mL/mol and 2.3 x 10(-4) for the NH4+ form. When the Trp synthase-L-Ser complex is subjected to pressure jumps of 100-400 bar, relaxations are observed, exhibiting an increase in fluorescence emission at wavelengths greater than 455 nm, with 405 nm excitation. The relaxation to the new equilibrium position requires two exponentials to fit the data in the presence of 0.1 M Na+ and three exponentials to obtain a reasonable fit in the absence of cations and with 0.1 M NH4+. Fluorescence emission at 325 nm, with excitation at 280 nm, also increases when the Trp synthase-L-Ser complex is subjected to pressure jump. These data demonstrate that the open conformation of Trp synthase is favored by higher pressure. Thus, the open conformation has a smaller apparent net system volume than the closed conformation. We estimate that there are 35-47 more waters in the solvation shell of the open conformation than in that of the closed conformation.
研究了静水压力对鼠伤寒沙门氏菌色氨酸(Trp)合酶α2β2复合物的影响。先前已表明Trp合酶表现出低活性(开放)和高活性(闭合)构象。已发现Trp合酶开放和闭合构象之间的平衡受多种变量影响,包括α亚基配体、单价阳离子、有机溶剂、pH和温度。当静水压力从1巴增加到2000巴时,Trp合酶-L-丝氨酸复合物的吸收光谱显示外部醛亚胺423nm波段的吸收增加,这是开放构象的特征。Trp合酶-L-丝氨酸复合物闭合和开放构象之间平衡的ΔV(o)和K(o),对于Na+形式分别为-126 mL/mol和0.12,对于NH4+形式分别为-171 mL/mol和2.3×10(-4)。当Trp合酶-L-丝氨酸复合物受到100 - 400巴的压力阶跃时,会观察到弛豫现象,在405nm激发下,波长大于455nm处的荧光发射增加。在0.1M Na+存在下,弛豫到新的平衡位置需要两个指数函数来拟合数据,在无阳离子和0.1M NH4+存在下则需要三个指数函数才能获得合理拟合。当Trp合酶-L-丝氨酸复合物受到压力阶跃时,在280nm激发下325nm处的荧光发射也会增加。这些数据表明,较高压力有利于Trp合酶的开放构象。因此,开放构象的表观净系统体积比闭合构象小。我们估计开放构象的溶剂化壳层中的水分子比闭合构象多35 - 47个。