Cheng Cecilia Y, Jarymowycz Virginia A, Cortajarena Aitziber L, Regan Lynne, Stone Martin J
Department of Chemistry, Indiana University, Bloomington, Indiana 47405-0001, USA.
Biochemistry. 2006 Oct 3;45(39):12175-83. doi: 10.1021/bi060819a.
The tetratricopeptide repeat (TPR) is a 34-residue helix-turn-helix motif that occurs as three or more tandem repeats in a wide variety of proteins. We have determined the repeat motions and backbone fluctuations of proteins containing two or three consensus TPR repeats (CTPR2 and CPTR3, respectively) using 15N NMR relaxation measurements. Rotational diffusion tensors calculated from these data for each repeat within each TPR protein indicate that there is a high degree of motional correlation between different repeats in the same protein. This is consistent with the prevailing view that repeat proteins, such as CTPR2 and CTPR3, behave as single cooperatively folded domains. The internal motions of backbone NH groups were determined using the Lipari-Szabo model-free formalism. For most residues, there was a clear separation between the influence of internal motion and the influence of global rotational tumbling on the observed magnetic relaxation. The local internal motions are highly restricted in most of the helical elements, with slightly greater flexibility in the linker elements. Comparisons between CTPR2 and CTPR3 indicate that an addition of a TPR repeat to the C-terminus (before the solvation helix) of CTPR2 slightly reduces the flexibility of the preceding helix.
四肽重复序列(TPR)是一种由34个氨基酸残基组成的螺旋-转角-螺旋基序,在多种蛋白质中以三个或更多个串联重复的形式出现。我们使用15N NMR弛豫测量方法,确定了含有两个或三个共有TPR重复序列(分别为CTPR2和CPTR3)的蛋白质的重复序列运动和主链波动情况。根据这些数据计算出的每个TPR蛋白中每个重复序列的旋转扩散张量表明,同一蛋白质中不同重复序列之间存在高度的运动相关性。这与普遍观点一致,即像CTPR2和CPTR3这样的重复蛋白表现为单一的协同折叠结构域。使用Lipari-Szabo无模型形式体系确定了主链NH基团的内部运动。对于大多数残基,内部运动的影响与整体旋转翻滚对观测到的磁弛豫的影响之间有明显区分。在大多数螺旋元件中,局部内部运动受到高度限制,连接元件的灵活性略高。CTPR2和CTPR3之间的比较表明,在CTPR2的C末端(在溶剂化螺旋之前)添加一个TPR重复序列会略微降低前一个螺旋的灵活性。