Barbato G, Ikura M, Kay L E, Pastor R W, Bax A
Laboratory of Chemical Physics, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, Maryland 20892.
Biochemistry. 1992 Jun 16;31(23):5269-78. doi: 10.1021/bi00138a005.
The backbone dynamics of Ca(2+)-saturated recombinant Drosophila calmodulin has been studied by 15N longitudinal and transverse relaxation experiments, combined with 15N(1H) NOE measurements. Results indicate a high degree of mobility near the middle of the central helix of calmodulin, from residue K77 through S81, with order parameters (S2) in the 0.5-0.6 range. The anisotropy observed in the motion of the two globular calmodulin domains is much smaller than expected on the basis of hydrodynamic calculations for a rigid dumbbell type structure. This indicates that, for the purposes of 15N relaxation, the tumbling of the N-terminal (L4-K77) and C-terminal (E82-S147) lobes of calmodulin is effectively independent. A slightly shorter motional correlation time (tau c approximately 6.3 ns) is obtained for the C-terminal domain compared to the N-terminal domain (tau c approximately 7.1 ns), in agreement with the smaller size of the C-terminal domain. A high degree of mobility, with order parameters of approximately 0.5, is also observed in the loop that connects the first with the second EF-hand type calcium binding domain and in the loop connecting the third and fourth calcium binding domain.
通过¹⁵N纵向和横向弛豫实验,并结合¹⁵N(¹H) NOE测量,研究了Ca²⁺饱和的重组果蝇钙调蛋白的主链动力学。结果表明,在钙调蛋白中央螺旋中部附近,从残基K77到S81,具有高度的流动性,序参数(S²)在0.5 - 0.6范围内。在两个球状钙调蛋白结构域的运动中观察到的各向异性比基于刚性哑铃型结构的流体动力学计算预期的要小得多。这表明,就¹⁵N弛豫而言,钙调蛋白N端(L4 - K77)和C端(E82 - S147)叶的翻滚实际上是独立的。与N端结构域(τc约为7.1 ns)相比,C端结构域获得的运动相关时间略短(τc约为6.3 ns),这与C端结构域较小的尺寸一致。在连接第一个与第二个EF手型钙结合结构域的环以及连接第三个和第四个钙结合结构域的环中也观察到高度的流动性,序参数约为0.5。