Li X L, Lei X D, Cai H, Li J, Yang S L, Wang C C, Tsou C L
National Laboratory of Biomacromolecules, Institute of Biophysics, Academia Sinica, 15 Datun Road., Beijing 100101, China.
Biochem J. 1998 Apr 15;331 ( Pt 2)(Pt 2):505-11. doi: 10.1042/bj3310505.
Upon dilution, D-glyceraldehyde-3-phosphate dehydrogenase (GADPH) that has been fully inactivated, but only partially unfolded, in dilute guanidine hydrochloride (GuHCl) recovers activity completely. The fully unfolded enzyme, however, is re-activated only to a limited extent after dilution, and refolds rapidly in a burst phase to a partially folded intermediate characterized by increases in both the emission intensity of intrinsic fluorescence and binding to 8-anilino-1-naphthalenesulphonic acid (ANS). This intermediate aggregates with a time lag of a few minutes, and the aggregation can be suppressed completely by chaperonin 60 (GroEL). Stoichiometric analysis of the suppression of GAPDH re-activation by GroEL suggests that the tetradecameric GroEL binds to a dimeric GAPDH folding intermediate. This intermediate can be re-activated by ATP or ATP/chaperonin 10 (GroES) to an extent considerably greater than that obtained on spontaneous re-activation of the fully denatured enzyme upon dilution. Probing with a fluorescent derivative of NAD+ shows that this folding intermediate does not have a native conformation at the active site. The similar profiles of the effects of GroEL and ANS on the re-activation of GAPDH denatured by different concentrations of GuHCl suggest that GroEL and ANS recognize and bind to the same folding intermediate, which is similar to the relatively stable, partially unfolded, state of the enzyme denatured in 0.5-1.0 MGuHCl. However, the complexes of the intermediate with GroEL or ANS appear to be different, in that GroEL, but not ANS, suppresses aggregation and assists folding in the presence of ATP.
在稀释时,已在稀盐酸胍(GuHCl)中完全失活但仅部分展开的D-甘油醛-3-磷酸脱氢酶(GADPH)可完全恢复活性。然而,完全展开的酶在稀释后仅在有限程度上重新激活,并在一个爆发阶段迅速重新折叠成一个部分折叠的中间体,其特征是内在荧光发射强度增加以及与8-苯胺基-1-萘磺酸(ANS)结合。这个中间体在几分钟的时间滞后聚集,并且伴侣蛋白60(GroEL)可以完全抑制聚集。对GroEL抑制GAPDH重新激活的化学计量分析表明,十四聚体GroEL与二聚体GAPDH折叠中间体结合。这个中间体可以被ATP或ATP/伴侣蛋白10(GroES)重新激活,其程度远大于完全变性的酶在稀释时自发重新激活的程度。用NAD+的荧光衍生物进行探测表明,这个折叠中间体在活性位点没有天然构象。GroEL和ANS对不同浓度GuHCl变性的GAPDH重新激活的影响具有相似的曲线,这表明GroEL和ANS识别并结合到相同的折叠中间体,该中间体类似于在0.5 - 1.0 M GuHCl中变性的酶的相对稳定、部分展开的状态。然而,中间体与GroEL或ANS的复合物似乎不同,因为在ATP存在的情况下,GroEL而非ANS抑制聚集并协助折叠。