Burgering M J, Hald M, Boelens R, Breg J N, Kaptein R
Bijvoet Center for Biomolecular Research, Utrecht, The Netherlands.
Biopolymers. 1995 Feb;35(2):217-26. doi: 10.1002/bip.360350210.
The hydrogen exchange rates of the backbone amide and labile side-chain protons of the dimeric Arc repressor have been measured. For the slowly exchanging amides in the alpha-helical regions, these rates show a concentration dependence. To account for this dependence, the role of the monomer-dimer equilibrium was considered. Extrapolating the observed exchange rates to zero dimer concentration provides estimates of these rates in the monomer and shows that they are significantly retarded compared to those of an unfolded polypeptide. This suggests that the monomer is in a structured "molten globule" like state. In particular, the two helices of Arc retain a high degree of their secondary structure and it is proposed that the two amphiphilic helices are packed together with their hydrophobic faces. Evidence for a partially folded structure in the Arc monomer was reported earlier in two other studies [J. L. Silva, C. F. Silveira, A. Correia, Jr., and L. Pontes (1992) Journal of Molecular Biology, Vol. 223, pp. 545-555; X. Peng, J. Jonas, and J. L. Silva (1993) Proceedings of the National Academy of Science USA, Vol. 90, pp. 1776-1780]. By combining the results of these studies and ours, a folding pathway of the dimeric Arc repressor involving four different stages is proposed. Due to the low concentration of Arc repressor in the cell, the protein is present either as a free monomer or it is bound to DNA presumably as a tetramer. Therefore the folding pathway can be regarded as an integral part of the overall DNA binding process.
已测量了二聚体Arc阻遏蛋白主链酰胺和不稳定侧链质子的氢交换速率。对于α螺旋区域中缓慢交换的酰胺,这些速率呈现出浓度依赖性。为了解释这种依赖性,考虑了单体 - 二聚体平衡的作用。将观察到的交换速率外推至零二聚体浓度,可得到单体中这些速率的估计值,结果表明与未折叠多肽相比,它们显著延迟。这表明单体处于类似结构化“熔球”的状态。特别是,Arc的两条螺旋保留了高度的二级结构,并且有人提出两条两亲性螺旋以其疏水面向内堆积在一起。另外两项研究 [J. L. 席尔瓦、C. F. 席尔韦拉、A. 科雷亚、小L. 庞特斯(1992年)《分子生物学杂志》,第223卷,第545 - 555页;X. 彭、J. 乔纳斯和J. L. 席尔瓦(1993年)《美国国家科学院院刊》,第90卷,第1776 - 1780页] 较早前报道了Arc单体中存在部分折叠结构的证据。通过结合这些研究和我们的研究结果,提出了涉及四个不同阶段的二聚体Arc阻遏蛋白的折叠途径。由于细胞中Arc阻遏蛋白的浓度较低,该蛋白要么以游离单体形式存在,要么可能以四聚体形式与DNA结合。因此,折叠途径可被视为整个DNA结合过程的一个组成部分。