Lee G F, Hazelbauer G L
Department of Biochemistry and Biophysics, Washington State University, Pullman 99164-4660, USA.
Protein Sci. 1995 Jun;4(6):1100-7. doi: 10.1002/pro.5560040608.
The transmembrane domain of chemoreceptor Trg from Escherichia coli contains four transmembrane segments in its native homodimer, two from each subunit. We had previously used mutational analysis and sulfhydryl cross-linking between introduced cysteines to obtain data relevant to the three-dimensional organization of this domain. In the current study we used Fourier analysis to assess these data quantitatively for periodicity along the sequences of the segments. The analyses provided a strong indication of alpha-helical periodicity in the first transmembrane segment and a substantial indication of that periodicity for the second segment. On this basis, we considered both segments as idealized alpha-helices and proceeded to model the transmembrane domain as a unit of four helices. For this modeling, we calculated helical crosslinking moments, parameters analogous to helical hydrophobic moments, as a quantitative way of condensing and utilizing a large body of crosslinking data. Crosslinking moments were used to define the relative separation and orientation of helical pairs, thus creating a quantitatively derived model for the transmembrane domain of Trg. Utilization of Fourier transforms to provide a quantitative indication of periodicity in data from analyses of transmembrane segments, in combination with helical crosslinking moments to position helical pairs should be useful in modeling other transmembrane domains.
来自大肠杆菌的化学感受器Trg的跨膜结构域在其天然同型二聚体中包含四个跨膜片段,每个亚基各有两个。我们之前使用突变分析以及引入的半胱氨酸之间的巯基交联来获取与该结构域三维组织相关的数据。在当前研究中,我们使用傅里叶分析对这些数据沿片段序列的周期性进行定量评估。分析结果有力地表明第一个跨膜片段存在α螺旋周期性,并且为第二个片段的该周期性提供了充分的证据。在此基础上,我们将两个片段都视为理想化的α螺旋,并着手将跨膜结构域建模为四个螺旋的单元。对于此建模,我们计算了螺旋交联矩,这是类似于螺旋疏水矩的参数,作为浓缩和利用大量交联数据的定量方法。交联矩用于定义螺旋对的相对间距和方向,从而创建一个从定量角度推导的Trg跨膜结构域模型。利用傅里叶变换为跨膜片段分析数据中的周期性提供定量指示,结合螺旋交联矩来定位螺旋对,这在对其他跨膜结构域进行建模时应该会很有用。