Yushmanov Victor E, Mandal Pravat K, Liu Zhanwu, Tang Pei, Xu Yan
Department of Anesthesiology, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania 15261, USA.
Biochemistry. 2003 Apr 8;42(13):3989-95. doi: 10.1021/bi026767g.
The structure and backbone dynamics of an extended second transmembrane segment (TM2e) of the human neuronal glycine receptor alpha(1) subunit in sodium dodecyl sulfate micelles were studied by (1)H and (15)N solution-state NMR. The 28-amino acid segment contained the consensus TM2 domain plus part of the linker between the second and third transmembrane domains. The presence of a well-structured helical region of at least 13 amino acids long and an unstructured region near the linker was evident from the proton chemical shifts and the pattern of midrange nuclear Overhauser effects (NOE). (15)N relaxation rate constants, R(1) and R(2), and (15)N-[(1)H] NOE indicated restricted internal motions in the helical region with NOE values between 0.6 and 0.8. The squared order parameter (S(2)), the effective correlation time for fast internal motions (tau(e)), and the global rotational correlation time (tau(m)) were calculated for all TM2e backbone N-H bonds using the model-free approach. The S(2) values ranged about 0.75-0.86, and the tau(e) values were below 100 ps for most of the residues in the helical region. The tau(m) value, calculated from the dynamics of the helical region, was 5.1 ns. The S(2) values decreased to 0.1, and the tau(e) values sharply increased up to 1.2 ns at the linker near the C-terminus, indicating that the motion of this region is unrestricted. The results suggest a relatively high degree of motional freedom of TM2e in micelles and different propensities of the N- and C-terminal moieties of the transmembrane domain to assume stable helical structures.
通过氢(¹H)和氮(¹⁵N)溶液态核磁共振研究了人神经元甘氨酸受体α(1)亚基在十二烷基硫酸钠胶束中的延伸第二跨膜片段(TM2e)的结构和主链动力学。该28个氨基酸的片段包含共有跨膜结构域2(TM2)以及第二和第三跨膜结构域之间连接区的一部分。从质子化学位移和中等范围核Overhauser效应(NOE)模式可以明显看出,存在至少13个氨基酸长的结构良好的螺旋区域以及连接区附近的无结构区域。¹⁵N弛豫速率常数R(1)和R(2)以及¹⁵N-¹H NOE表明螺旋区域内的内部运动受限,NOE值在0.6至0.8之间。使用无模型方法计算了所有TM2e主链N-H键的平方序参数(S(2))、快速内部运动的有效相关时间(τe)和全局旋转相关时间(τm)。螺旋区域中大多数残基的S(2)值约为0.75 - 0.86,τe值低于100皮秒。从螺旋区域的动力学计算得到的τm值为5.1纳秒。在靠近C端的连接区,S(2)值降至0.1,τe值急剧增加至1.2纳秒,表明该区域的运动不受限制。结果表明TM2e在胶束中具有相对较高的运动自由度,并且跨膜结构域的N端和C端部分形成稳定螺旋结构的倾向不同。