Kar S R, Adams A C, Lebowitz J, Taylor K B, Hall L M
The Graduate Program in Biophysical Sciences, Department of Microbiology, University of Alabama at Birmingham, Birmingham, Alabama 35294-2041, USA.
Biochemistry. 1997 Dec 9;36(49):15343-8. doi: 10.1021/bi971690v.
The Synechococcus PCC7942 metallothionein repressor gene smtB has been cloned into a high expression vector and the protein purified to near homogeneity (>/=98%). Analytical ultracentrifugation studies demonstrate that the protein is predominantly dimeric in 0.1 M NaCl, pH 7.4, and 22 degrees C, exhibiting a monomer-dimer-tetramer equilibrium. The monomer-dimer (Ka(1,2)) and the dimer-tetramer (Ka(2,4)) association constants are 3.24 x 10(5) and 9.90 x 10(2) M-1, respectively. The repressor binds two Zn2+ ions per subunit with an overall Kd of 3.49 x 10(-6) M. In the presence of Zn2+, Ka(1, 2) increases by 2 orders of magnitude to 1.25 x 10(7) M-1 and the apparent weight-averaged sedimentation coefficient increases from 2. 00 to 2.22 S. The fact that the increase in sedimentation coefficient is greater than that predicted by increased dimerization is interpreted as caused by compaction of the structure in the presence of metal ions. At pH 6.0, 0.1 M NaCl, and 22 degrees C, the protein exhibits only a monomer-dimer equilibrium, with Ka(1,2) = 1.52 x 10(7) M-1 which is almost identical to that seen upon binding Zn2+ at pH 7.4. The compaction and conformational change in SmtB caused by Zn2+ is consistent with a role for this altered quaternary state in derepression of smtA in Synechococcus challenged with heavy metal ions.
嗜热栖热放线菌PCC7942金属硫蛋白阻遏基因smtB已被克隆到一个高表达载体中,并且该蛋白质已被纯化至接近均一状态(≥98%)。分析超速离心研究表明,在0.1 M NaCl、pH 7.4和22℃条件下,该蛋白质主要以二聚体形式存在,呈现单体-二聚体-四聚体平衡。单体-二聚体(Ka(1,2))和二聚体-四聚体(Ka(2,4))的缔合常数分别为3.24×10⁵和9.90×10² M⁻¹。每个亚基的阻遏蛋白结合两个Zn²⁺离子,总解离常数Kd为3.49×10⁻⁶ M。在Zn²⁺存在的情况下,Ka(1, 2)增加2个数量级至1.25×10⁷ M⁻¹,表观重均沉降系数从2.00增加到2.22 S。沉降系数的增加大于二聚化增加所预测的值这一事实被解释为是由于在金属离子存在下结构的压缩所致。在pH 6.0、0.1 M NaCl和22℃条件下,该蛋白质仅呈现单体-二聚体平衡,Ka(1,2)=1.52×10⁷ M⁻¹,这与在pH 7.4时结合Zn²⁺时观察到的情况几乎相同。Zn²⁺引起的SmtB的压缩和构象变化与这种改变的四级结构在嗜热栖热放线菌受到重金属离子挑战时对smtA去阻遏作用中的作用一致。