Kovermann Michael, Zierold Robert, Haupt Caroline, Löw Christian, Balbach Jochen
Institut für Physik, Biophysik, Martin-Luther-Universität Halle-Wittenberg, D-06099 Halle (Saale), Germany.
Biochim Biophys Acta. 2011 Jul;1814(7):873-81. doi: 10.1016/j.bbapap.2011.03.016. Epub 2011 Apr 3.
The dynamics of the two domain prolyl-peptidyl cis/trans isomerase and chaperone SlyD was studied on a ps-to-ns time scale to correlate dynamic changes with the catalytic function. (15)N transversal and longitudinal relaxation rates as well as heteronuclear Overhauser effects were determined at different temperatures for Escherichia coli SlyD (EcSlyD) and for Thermus thermophilus SlyD (TtSlyD). With the well established extended Lipari-Szabo approach, the order parameter, S(2), the internal correlation time, τ(e), the exchange rate, R(ex), of the backbone amide protons, and the overall molecular tumbling time, τ(m), were determined. The study was extended to a relaxation analysis of the peptide bound state for both SlyD species. We found highly different relaxation and dynamic behavior of the two domains for free SlyD. Surprisingly, in the presence of a substrate for the chaperone domain, the ps-to-ns dynamics in the remote center of the prolyl-peptidyl cis/trans isomerization domain increases. We observed this crosstalk between the two domains for both EcSlyD and TtSlyD.
在皮秒到纳秒的时间尺度上研究了双结构域脯氨酰 - 肽基顺反异构酶和伴侣蛋白SlyD的动力学,以将动态变化与催化功能相关联。在不同温度下测定了大肠杆菌SlyD(EcSlyD)和嗜热栖热菌SlyD(TtSlyD)的(15)N横向和纵向弛豫率以及异核Overhauser效应。采用成熟的扩展Lipari - Szabo方法,确定了序参数S(2)、内部相关时间τ(e)、主链酰胺质子的交换率R(ex)以及整体分子翻滚时间τ(m)。该研究扩展到对两种SlyD物种的肽结合状态的弛豫分析。我们发现游离SlyD的两个结构域具有高度不同的弛豫和动态行为。令人惊讶的是,在伴侣结构域存在底物的情况下,脯氨酰 - 肽基顺反异构化结构域远端中心的皮秒到纳秒动力学增加。我们在EcSlyD和TtSlyD中都观察到了两个结构域之间的这种串扰。