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压力诱导的自主神经系统 - 脱辅基肌红蛋白复合物的扰动:天然态和酸性致密态的频域荧光研究

Pressure-induced perturbation of ANS-apomyoglobin complex: frequency domain fluorescence studies on native and acidic compact states.

作者信息

Bismuto E, Irace G, Sirangelo I, Gratton E

机构信息

Dipartimento di Biochimica e Biofisica, Seconda Università di Napoli, Italy.

出版信息

Protein Sci. 1996 Jan;5(1):121-6. doi: 10.1002/pro.5560050115.

Abstract

The pressure dependence of the flexibility of the 8-anilino-1-naphthalene sulfonate (ANS)-apomyoglobin complex was investigated in the range between atmospheric pressure and 2.4 kbar by frequency domain fluorometry. We examined two structural states: native and acidic compact. The conformational dynamics of the ANS-apomyoglobin complex were deduced by studying the emission decay of ANS, which can form a noncovalent complex with the apoprotein in both the native and the acidic compact forms. Because the free fluorophore has a very short lifetime (less than 75 ps), its contribution can be separated from the long-lived emission. The latter arises from ANS molecules bound to the protein and provides information on the structural and dynamic characteristics of the macromolecule. The fluorescence emission decay of the ANS-apomyoglobin complex at neutral pH has a broad fluorescence lifetime distribution (width at half-maximum = 4.1 ns). The small changes in the fluorescence distribution parameters that occur with changes in pressure indicate that the ANS-apomyoglobin complex at neutral pH holds its compactness even at 2.4 kbar. A small contraction of molecular volume has been detected at low pressure, followed by a slight swelling with an increase in flexibility at higher pressures. The heterogeneity of ANS fluorescence in the acidic compact state of apomyoglobin is even greater than that in the native form (distribution width = 10 ns); moreover, the acidic compact state appears more expanded and accessible to solvent molecules than the native state, as suggested by the distribution center, which is 11 ns for the former and 19 ns for the latter. The lifetime distribution center remains constant with increasing pressure, which suggests that no other binding site is formed at high pressure.

摘要

通过频域荧光法研究了8-苯胺基-1-萘磺酸盐(ANS)-脱辅基肌红蛋白复合物柔韧性的压力依赖性,压力范围为大气压至2.4千巴。我们研究了两种结构状态:天然态和酸性紧密态。通过研究ANS的发射衰减来推导ANS-脱辅基肌红蛋白复合物的构象动力学,ANS能与天然态和酸性紧密态的脱辅基蛋白形成非共价复合物。由于游离荧光团的寿命非常短(小于75皮秒),其贡献可以与长寿命发射区分开来。后者源于与蛋白质结合的ANS分子,并提供了有关大分子结构和动力学特征的信息。中性pH条件下ANS-脱辅基肌红蛋白复合物的荧光发射衰减具有较宽的荧光寿命分布(半高宽 = 4.1纳秒)。压力变化时荧光分布参数的微小变化表明,中性pH条件下的ANS-脱辅基肌红蛋白复合物即使在2.4千巴时仍保持其紧密性。在低压下检测到分子体积有小幅度收缩,随后在较高压力下随着柔韧性增加出现轻微膨胀。脱辅基肌红蛋白酸性紧密态中ANS荧光的异质性甚至大于天然态(分布宽度 = 10纳秒);此外,如分布中心所示,酸性紧密态似乎比天然态更扩展且更容易被溶剂分子接近,前者为11纳秒,后者为19纳秒。随着压力增加,寿命分布中心保持不变,这表明在高压下没有形成其他结合位点。

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