Slijper M, Boelens R, Davis A L, Konings R N, van der Marel G A, van Boom J H, Kaptein R
Bijvoet Center for Biomolecular Research, Utrecht University, The Netherlands.
Biochemistry. 1997 Jan 7;36(1):249-54. doi: 10.1021/bi961670d.
The dynamics of the backbone and (some of) the side chains of lac headpiece (1-56; lac HP56) have been studied for the free protein and for its complex with lac half-operator DNA by 15N T1 and T1p relaxation measurements combined with [1H-15N] NOE experiments. For the structurally well-defined part of the free lac HP56 (i.e., residues 3-49) a rigid backbone was found for residues in the three alpha-helices and for the turn of the helix-turn-helix motif. The loop between helices II and III of lac headpiece, which was characterized by slight disorder in the structure calculations, shows increased mobility. The detected side chains are very mobile. These data are in full agreement with the rms deviations in the structural data of free lac HP56. When lac HP56 is complexed with DNA, several changes in mobility take place. The most remarkable change was found for the loop region between helices II and III: residue His-29 within this loop interacts with Thy-3 of the operator DNA. As a result this mobile loop adapts itself to the DNA and becomes more rigid. Moreover, most DNA-contacting side chains show a significant decrease in flexibility, although these side chains do not become as rigid as the backbone. These results suggest that the mobility of the regions within lac HP56 important for complexation, i.e., the loop and the DNA-contacting side chains, is essential for a good fit onto the counterparts of the target DNA.
通过结合[1H-15N] NOE实验的15N T1和T1p弛豫测量,研究了乳糖阻遏蛋白头域(1-56;lac HP56)的主链和(部分)侧链在游离蛋白及其与乳糖半操纵子DNA复合物中的动力学。对于游离lac HP56结构明确的部分(即残基3-49),在三个α-螺旋和螺旋-转角-螺旋基序的转角中的残基发现有刚性主链。乳糖阻遏蛋白头域螺旋II和III之间的环在结构计算中表现出轻微无序,其流动性增加。检测到的侧链非常灵活。这些数据与游离lac HP56结构数据中的均方根偏差完全一致。当lac HP56与DNA复合时,流动性发生了几个变化。最显著的变化发生在螺旋II和III之间的环区域:该环内的残基His-29与操纵子DNA的Thy-3相互作用。结果,这个灵活的环适应了DNA并变得更加刚性。此外,大多数与DNA接触的侧链的灵活性显著降低,尽管这些侧链不像主链那样刚性。这些结果表明,lac HP56中对复合重要的区域,即环和与DNA接触的侧链的流动性,对于与靶DNA对应物的良好契合至关重要。