Barbar E, Barany G, Woodward C
Department of Biochemistry, University of Minnesota, St. Paul 55108, USA.
Biochemistry. 1995 Sep 12;34(36):11423-434. doi: 10.1021/bi00036a015.
The structure of [14-38]Abu, a variant of bovine pancreatic trypsin inhibitor (BPTI) with only the 14-38 disulfide bridge intact, has been analyzed by two-dimensional 1H and 1H-15N NMR. Except for the 18-24, 29-35 antiparallel beta-sheet, residues in all regions of the molecule give two exchange cross peaks for each 1H; for one residue, Gly 37, three exchange cross peaks are observed. The presence of exchange cross peaks indicates that the residues sample conformations that interconvert on a time scale of milliseconds or longer. Over 90% of the NMR spectra have been assigned, including backbone and side chain atoms and their exchange cross peaks. Analyses of chemical shifts, chemical exchange, hydrogen isotope exchange, and NOEs indicate that [14-38]Abu at pH 4.5 and 1 degree C is an ensemble of interconverting conformations, in all of which the 18-24, 29-35 antiparallel beta-sheet is native-like and intact. Outside the antiparallel beta-sheet, residues undergo local order/disorder transitions. The stable structure of [14-38]Abu is not in the vicinity of the 14-38 disulfide bond but rather is in the slow-exchange core. NOE analysis indicates that the main tertiary interactions involve hydrophobic contacts with the rings of Tyr 21, Tyr 23, and Tyr 35. As a model for early folding intermediates, the structure of [14-38]Abu suggests that BPTI folding is initiated by stabilization of a turn existing in the unfolded protein and involves both local and nonlocal hydrophobic interactions.
[14 - 38]Abu是牛胰蛋白酶抑制剂(BPTI)的一种变体,仅14 - 38二硫键完整,其结构已通过二维¹H和¹H - ¹⁵N NMR进行分析。除了18 - 24、29 - 35反平行β - 折叠外,分子所有区域的残基每个¹H都给出两个交换交叉峰;对于一个残基Gly 37,观察到三个交换交叉峰。交换交叉峰的存在表明这些残基采样的构象在毫秒或更长时间尺度上相互转换。已完成超过90%的NMR谱图归属,包括主链和侧链原子及其交换交叉峰。化学位移、化学交换、氢同位素交换和NOE分析表明,在pH 4.5和1℃条件下,[14 - 38]Abu是相互转换构象的集合,在所有这些构象中,18 - 24、29 - 35反平行β - 折叠是类似天然且完整的。在反平行β - 折叠之外,残基经历局部有序/无序转变。[14 - 38]Abu的稳定结构不在14 - 38二硫键附近,而是在慢交换核心区域。NOE分析表明主要的三级相互作用涉及与Tyr 21、Tyr 23和Tyr 35环的疏水接触。作为早期折叠中间体的模型,[14 - 38]Abu的结构表明BPTI折叠是由未折叠蛋白中存在的一个转角的稳定化引发的,并且涉及局部和非局部的疏水相互作用。