Xu Zhen, Xie Qiang, Zhou Hai-Meng
Department of Biological Science and Biotechnology, Tsinghua University, Beijing 100084, People's Republic of China.
J Protein Chem. 2003 Nov;22(7-8):669-75. doi: 10.1023/b:jopc.0000008732.38381.16.
The trichloroacetic acid (TCA)-induced unfolding of aminoacylase was investigated by measurement of aggregation, enzyme activity, intrinsic fluorescence, 8-anilino-1-naphthalene sulfonate (ANS) binding, circular dichroism, and native polyacrylamide gel electrophoresis. The results showed that TCA caused inactivation and unfolding of aminoacylase. Intrinsic fluorescence results demonstrated that the TCA-induced transition of aminoacylase was characterized by two distinct stages during which the fluorescence emission maxima first redshifted to 338 nm and then blueshifted to 332 nm, close to that of native protein. ANS binding measurements revealed that TCA-denatured aminoacylase had a large hydrophobic area for TCA concentration near 2 mM. Comparison of the relative changes in wavelength shift and in the ANS intensity suggested the formation of a stable molten globule state of aminoacylase with a slightly disrupted tertiary structure and more hydrophobic surface than the native protein. Far-UV circular dichroism results provided further support that TCA induced the formation of two partially folded intermediates each with an enhanced native-like secondary structure. The results collectively suggest that a TCA-induced molten globule state is formed and stabilized during unfolding of aminoacylase and that association of the molten globule state may account for precipitation of the protein when denatured by TCA.
通过测量聚集、酶活性、内源荧光、8-苯胺基-1-萘磺酸盐(ANS)结合、圆二色性和天然聚丙烯酰胺凝胶电泳,研究了三氯乙酸(TCA)诱导的氨基酰化酶的去折叠。结果表明,TCA导致氨基酰化酶失活和去折叠。内源荧光结果表明,TCA诱导的氨基酰化酶转变具有两个不同阶段,在此期间荧光发射最大值首先红移至338nm,然后蓝移至332nm,接近天然蛋白质的荧光发射最大值。ANS结合测量表明,对于浓度接近2mM的TCA,TCA变性的氨基酰化酶具有较大的疏水区域。波长位移和ANS强度的相对变化比较表明,氨基酰化酶形成了一种稳定的熔球状态,其三级结构略有破坏,表面比天然蛋白质更疏水。远紫外圆二色性结果进一步支持了TCA诱导形成两个部分折叠的中间体,每个中间体都具有增强的类似天然的二级结构。这些结果共同表明,在氨基酰化酶去折叠过程中形成并稳定了TCA诱导的熔球状态,并且熔球状态的缔合可能是蛋白质被TCA变性时沉淀的原因。