Nielsen K J, Alewood D, Andrews J, Kent S B, Craik D J
Victorian College of Pharmacy, Monash University, Parkville, Australia.
Protein Sci. 1994 Feb;3(2):291-302. doi: 10.1002/pro.5560030213.
The 3-dimensional structures of mirror-image forms of a Leu-5 variant of the trypsin inhibitor Ecballium elaterium (EETI-II) have been determined by 1H NMR spectroscopy and simulated annealing calculations incorporating NOE-derived distance constraints. Spectra were assigned using 2-dimensional NMR methods at 400 MHz, and internuclear distances were determined from NOESY experiments. Three-bond spin-spin couplings between C alpha H and amide protons, amide exchange rates, and the temperature dependence of amide chemical shifts were also measured. The structure consists largely of loops and turns, with a short region of beta-sheet. The Leu-5 substitution produces a substantial reduction in affinity for trypsin relative to native EETI-II, which contains an Ile at this position. The global structure of the Leu-5 analogue studied here is similar to that reported for native EETI-II (Heitz A, Chiche L, Le-Nguyen D, Castro B, 1989, Biochemistry 28:2392-2398) and to X-ray and NMR structures of the related proteinase inhibitor CMTI-I (Bode W et al., 1989, FEBS Lett 242:285-292; Holak TA et al., 1989a, J Mol Biol 210:649-654; Holak TA, Gondol D, Otlewski J, Wilusz T, 1989b, J Mol Biol 210:635-648; Holak TA, Habazettl J, Oschkinat H, Otlewski J, 1991, J Am Chem Soc 113:3196-3198). The region near the scissile bond is the most disordered part of the structure, based on geometric superimposition of 40 calculated structures. This disorder most likely reflects additional motion being present in this region relative to the rest of the protein. This motional disorder is increased in the Leu-5 analogue relative to the native form and may be responsible for its reduced trypsin binding. A second form of the protein synthesized with all (D) amino acids was also studied by NMR and found to have a spectrum identical with that of the (L) form. This is consistent with the (D) form being a mirror image of the (L) form and not distinguishable by NMR in an achiral solvent (i.e., H2O). The (D) form has no activity against trypsin, as would be expected for a mirror-image form.
通过1H NMR光谱法和结合NOE衍生距离约束的模拟退火计算,确定了胰蛋白酶抑制剂喷瓜(EETI-II)Leu-5变体镜像形式的三维结构。在400 MHz下使用二维NMR方法对光谱进行了归属,并从NOESY实验中确定了核间距离。还测量了CαH与酰胺质子之间的三键自旋-自旋耦合、酰胺交换率以及酰胺化学位移的温度依赖性。该结构主要由环和转角组成,有一小段β-折叠区域。相对于天然EETI-II(该位置为Ile),Leu-5取代使对胰蛋白酶的亲和力大幅降低。此处研究的Leu-5类似物的整体结构与报道的天然EETI-II的结构相似(Heitz A、Chiche L、Le-Nguyen D、Castro B,1989年,《生物化学》28:2392 - 2398),也与相关蛋白酶抑制剂CMTI-I的X射线和NMR结构相似(Bode W等人,1989年,《欧洲生物化学学会联合会快报》242:285 - 292;Holak TA等人,1989a,《分子生物学杂志》210:649 - 654;Holak TA、Gondol D、Otlewski J、Wilusz T,1989b,《分子生物学杂志》210:635 - 648;Holak TA、Habazettl J、Oschkinat H、Otlewski J,1991年,《美国化学会志》113:3196 - 3198)。基于40个计算结构的几何叠加,裂解键附近的区域是结构中最无序的部分。这种无序很可能反映了该区域相对于蛋白质其余部分存在额外的运动。相对于天然形式,Leu-5类似物中的这种运动无序增加,可能是其胰蛋白酶结合能力降低的原因。还通过NMR研究了用所有(D)氨基酸合成的该蛋白质的第二种形式,发现其光谱与(L)形式的光谱相同。这与(D)形式是(L)形式的镜像且在非手性溶剂(即H2O)中无法通过NMR区分一致。如对镜像形式所预期的那样,(D)形式对胰蛋白酶没有活性。