Hsc70共伴侣蛋白之间的功能差异
Functional divergence between co-chaperones of Hsc70.
作者信息
Tzankov Stefan, Wong Michael J H, Shi Kun, Nassif Christina, Young Jason C
机构信息
Department of Biochemistry, McGill University, Montreal, Quebec H3G 1Y6, Canada.
出版信息
J Biol Chem. 2008 Oct 3;283(40):27100-9. doi: 10.1074/jbc.M803923200. Epub 2008 Aug 6.
The ATPase cycle of the chaperone Hsc70 is regulated by co-chaperones; Hsp40/DnaJ-related proteins stimulate ATP hydrolysis by Hsc70 and can bind unfolded polypeptides themselves. Conversely, various nucleotide exchange factors (NEFs) stimulate ADP-ATP exchange by Hsc70. We analyzed the purified Hsp40-related co-chaperones DJA1 (Hdj2) and DJA2 (Hdj3) and found that they had a distinct pattern of binding to a range of polypeptides. DJA2 alone could stimulate Hsc70-mediated refolding of luciferase in the absence of NEF, whereas DJA1 was much less active. The addition of the Bag1 NEF increased refolding by Hsc70 and DJA2, as did the newly characterized NEF Hsp110, but each NEF had a different optimal concentration ratio to Hsc70. Notably, the NEF HspBP1 could not increase refolding by Hsc70 and DJA2 at any concentration, and none of the NEFs improved the refolding activity with DJA1. Instead, DJA1 was inhibitory of refolding with DJA2 and Hsc70. All combinations of DJA1 or DJA2 with the three NEFs stimulated the Hsc70 ATPase rate, although Hsp110 became less effective with increasing concentrations. A chimeric DJA2 having its Hsc70-stimulatory J domain replaced with that of DJA1 was functional for polypeptide binding and ATPase stimulation of Hsc70. However, it could not support efficient Hsc70-mediated refolding and also inhibited refolding with DJA2 and Hsc70. These results suggest a more complex model of Hsc70 mechanism than has been previously thought, with notable functional divergence between Hsc70 co-chaperones.
伴侣蛋白Hsc70的ATP酶循环受共伴侣蛋白调节;Hsp40/DnaJ相关蛋白刺激Hsc70的ATP水解,且自身能结合未折叠的多肽。相反,各种核苷酸交换因子(NEF)刺激Hsc70进行ADP-ATP交换。我们分析了纯化的Hsp40相关共伴侣蛋白DJA1(Hdj2)和DJA2(Hdj3),发现它们与一系列多肽的结合模式不同。在没有NEF的情况下,单独的DJA2就能刺激Hsc70介导的荧光素酶重折叠,而DJA1的活性则低得多。Bag1 NEF的添加增加了Hsc70和DJA2介导的重折叠,新鉴定的NEF Hsp110也有同样效果,但每种NEF与Hsc70的最佳浓度比不同。值得注意的是,NEF HspBP1在任何浓度下都不能增加Hsc70和DJA2介导的重折叠;并且没有一种NEF能提高DJA1的重折叠活性。相反,DJA1会抑制DJA2和Hsc70介导的重折叠。DJA1或DJA2与三种NEF的所有组合都能刺激Hsc70的ATP酶活性,尽管随着Hsp110浓度增加其效果会减弱。将DJA2的Hsc70刺激型J结构域替换为DJA1的J结构域后得到的嵌合DJA2,在多肽结合和Hsc70的ATP酶刺激方面仍有功能。然而,它不能支持高效的Hsc70介导的重折叠,并且还会抑制DJA2和Hsc70介导的重折叠。这些结果表明,Hsc70机制比之前认为的更为复杂,Hsc70共伴侣蛋白之间存在显著的功能差异。