Fontaine Sarah N, Rauch Jennifer N, Nordhues Bryce A, Assimon Victoria A, Stothert Andrew R, Jinwal Umesh K, Sabbagh Jonathan J, Chang Lyra, Stevens Stanley M, Zuiderweg Erik R P, Gestwicki Jason E, Dickey Chad A
From the Department of Molecular Medicine, College of Medicine, USF Health Byrd Alzheimer's Institute, University of South Florida, Tampa, Florida 33613, James A. Haley Veteran's Hospital, Tampa, Florida 33612.
Deparment of Cell Biology, Microbiology and Molecular Biology, University of South Florida, Tampa, Florida 33620, Institute for Neurodegenerative Disease, University of California, San Francisco, California 94158, and.
J Biol Chem. 2015 May 22;290(21):13115-27. doi: 10.1074/jbc.M115.637595. Epub 2015 Apr 11.
The constitutively expressed heat shock protein 70 kDa (Hsc70) is a major chaperone protein responsible for maintaining proteostasis, yet how its structure translates into functional decisions regarding client fate is still unclear. We previously showed that Hsc70 preserved aberrant Tau, but it remained unknown if selective inhibition of the activity of this Hsp70 isoform could facilitate Tau clearance. Using single point mutations in the nucleotide binding domain, we assessed the effect of several mutations on the functions of human Hsc70. Biochemical characterization revealed that one mutation abolished both Hsc70 ATPase and refolding activities. This variant resembled the ADP-bound conformer at all times yet remained able to interact with cofactors, nucleotides, and substrates appropriately, resembling a dominant negative Hsc70 (DN-Hsc70). We then assessed the effects of this DN-Hsc70 on its client Tau. DN-Hsc70 potently facilitated Tau clearance via the proteasome in cells and brain tissue, in contrast to wild type Hsc70 that stabilized Tau. Thus, DN-Hsc70 mimics the action of small molecule pan Hsp70 inhibitors with regard to Tau metabolism. This shift in Hsc70 function by a single point mutation was the result of a change in the chaperome associated with Hsc70 such that DN-Hsc70 associated more with Hsp90 and DnaJ proteins, whereas wild type Hsc70 was more associated with other Hsp70 isoforms. Thus, isoform-selective targeting of Hsc70 could be a viable therapeutic strategy for tauopathies and possibly lead to new insights in chaperone complex biology.
组成型表达的70 kDa热休克蛋白(Hsc70)是一种主要的伴侣蛋白,负责维持蛋白质稳态,但其结构如何转化为关于底物命运的功能决策仍不清楚。我们之前表明Hsc70可保留异常的Tau蛋白,但尚不清楚选择性抑制这种Hsp70亚型的活性是否能促进Tau蛋白的清除。通过在核苷酸结合结构域引入单点突变,我们评估了几种突变对人Hsc70功能的影响。生化特性分析表明,一种突变同时消除了Hsc70的ATP酶活性和重折叠活性。该变体在所有时间都类似于ADP结合构象体,但仍能够与辅因子、核苷酸和底物进行适当的相互作用,类似于显性负性Hsc70(DN-Hsc70)。然后,我们评估了这种DN-Hsc70对其底物Tau蛋白的影响。与稳定Tau蛋白的野生型Hsc70相反,DN-Hsc70通过蛋白酶体在细胞和脑组织中有效地促进了Tau蛋白的清除。因此,在Tau蛋白代谢方面,DN-Hsc70模拟了小分子泛Hsp70抑制剂的作用。Hsc70功能通过单点突变发生的这种转变是与Hsc70相关的伴侣蛋白组发生变化的结果,即DN-Hsc70与Hsp90和DnaJ蛋白的关联更多,而野生型Hsc70与其他Hsp70亚型的关联更多。因此,对Hsc70进行亚型选择性靶向可能是治疗tau蛋白病的一种可行策略,并可能为伴侣蛋白复合体生物学带来新的见解。