Szyperski T, Vandenbussche G, Curstedt T, Ruysschaert J M, Wüthrich K, Johansson J
Institut für Molekularbiologie und Biophysik, Eidgenössische Technische Hochschule Hönggerberg, Zürich, Switzerland.
Protein Sci. 1998 Dec;7(12):2533-40. doi: 10.1002/pro.5560071206.
In the 35-residue pulmonary surfactant-associated lipopolypeptide C (SP-C), the stability of the valyl-rich alpha-helix comprising residues 9-34 has been monitored by circular dichroism, nuclear magnetic resonance, and Fourier transform infrared spectroscopy in both a mixed organic solvent and in phospholipid micelles. The alpha-helical form of SP-C observed in freshly prepared solutions in a mixed solvent of CHCl3/CH3OH/0.1 M HCl 32:64:5 (v/v/v) at 10 degrees C undergoes within a few days an irreversible transformation to an insoluble aggregate that contains beta-sheet secondary structure. Hydrogen exchange experiments revealed that this conformational transition proceeds through a transition state with an Eyring free activation enthalpy of about 100 kJ mol(-1), in which the polypeptide segment 9-27 largely retains a helical conformation. In dodecylphosphocholine micelles, the helical form of SP-C was maintained after seven weeks at 50 degrees C. The alpha-helical form of SP-C thus seems to be the thermodynamically most stable state in this micellar environment, whereas its presence in freshly prepared samples in the aforementioned mixed solvent is due to a high kinetic barrier for unfolding. These observations support a previously proposed pathway for in vivo synthesis of SP-C through proteolytic processing from a 21-kDa precursor protein.
在由35个氨基酸残基组成的肺表面活性物质相关脂多肽C(SP-C)中,通过圆二色性、核磁共振和傅里叶变换红外光谱法,在混合有机溶剂和磷脂微团中监测了包含9至34位残基的富含缬氨酸的α-螺旋的稳定性。在10℃下,于CHCl3/CH3OH/0.1 M HCl 32:64:5(v/v/v)的混合溶剂中新鲜制备的溶液中观察到的SP-C的α-螺旋形式,在几天内会不可逆地转变为含有β-折叠二级结构的不溶性聚集体。氢交换实验表明,这种构象转变通过一个过渡态进行,其艾林自由活化焓约为100 kJ mol(-1),其中9至27位的多肽片段在很大程度上保留了螺旋构象。在十二烷基磷酸胆碱微团中,SP-C的螺旋形式在50℃下7周后仍得以维持。因此,SP-C的α-螺旋形式在这种微团环境中似乎是热力学上最稳定的状态,而其在上述混合溶剂中新鲜制备的样品中的存在是由于展开存在高动力学屏障。这些观察结果支持了先前提出的通过从21 kDa前体蛋白进行蛋白水解加工在体内合成SP-C的途径。