Department of Microbiology, Yong Loo Lin School of Medicine, National University of Singapore, Singapore, Singapore.
Int J Biochem Cell Biol. 2012 Jan;44(1):233-45. doi: 10.1016/j.biocel.2011.10.021. Epub 2011 Nov 11.
The recent recognition of Plasmodium falciparum Hsp90 (PfHsp90) as a promising anti-malaria drug target has sparked interest in identifying factors that regulate its function and drug-interaction. Co-chaperones are well-known regulators of Hsp90's chaperone function, and certain members have been implicated in conferring protection against lethal cellular effects of Hsp90-specific inhibitors. In this context, studies on PfHsp90's co-chaperones are imperative to gain insight into the regulation of the chaperone in the malaria parasite. In this study, a putative co-chaperone P. falciparum Aha1 (PfAha1) was identified and investigated for its interaction and regulation of PfHsp90. A previous genome-wide yeast two-hybrid study failed to identify PfAha1's association with PfHsp90, which prompted us to use a directed assay to investigate their interaction. PfAha1 was shown to interact with PfHsp90 via the in vivo split-ubiquitin assay and the association was confirmed in vitro by GST pull-down experiments. The GST pull-down assay further revealed PfAha1's interaction with PfHsp90 to be dependent on MgCl(2) and ATP, and was competed by co-chaperone Pfp23 that binds PfHsp90 under the same condition. In addition, the PfHsp90-PfAha1 complex was found to be sensitive to disruption by high salt, indicating a polar interaction between them. Using bio-computational modelling coupled with site-directed mutagenesis, the polar residue N108 in PfAha1 was found to be strategically located and essential for PfHsp90 interaction. The functional significance of PfAha1's interaction was clearly that of exerting a stimulatory effect on the ATPase activity of PfHsp90, likely to be essential for promoting the activation of PfHsp90's client proteins.
最近,疟原虫 Hsp90(PfHsp90)作为一种有前途的抗疟药物靶点得到了认可,这激发了人们对鉴定调节其功能和药物相互作用的因素的兴趣。伴侣蛋白是 Hsp90 伴侣功能的众所周知的调节剂,某些成员被认为可以赋予对抗 Hsp90 特异性抑制剂的致命细胞效应的保护作用。在这种情况下,对 PfHsp90 的伴侣蛋白的研究对于深入了解疟原虫中伴侣蛋白的调节至关重要。在这项研究中,鉴定了一种假定的 PfHsp90 伴侣蛋白 P. falciparum Aha1(PfAha1),并研究了其与 PfHsp90 的相互作用和调节。以前的全基因组酵母双杂交研究未能鉴定 PfAha1 与 PfHsp90 的关联,这促使我们使用定向测定来研究它们的相互作用。PfAha1 被证明通过体内分裂泛素测定与 PfHsp90 相互作用,并且在体外通过 GST 下拉实验证实了该关联。GST 下拉实验进一步表明,PfAha1 与 PfHsp90 的相互作用依赖于 MgCl2 和 ATP,并且在相同条件下与结合 PfHsp90 的伴侣蛋白 Pfp23 竞争。此外,PfHsp90-PfAha1 复合物被发现对高盐的破坏敏感,表明它们之间存在极性相互作用。使用生物计算建模结合定点突变,发现 PfAha1 中的极性残基 N108 位于策略位置,对于 PfHsp90 的相互作用至关重要。PfAha1 相互作用的功能意义显然是对 PfHsp90 的 ATP 酶活性发挥刺激作用,可能对于促进 PfHsp90 的客户蛋白的激活至关重要。