Department of Inflammation and Immunity, Lerner Research Institute, The Cleveland Clinic, Cleveland, OH 44195, USA.
Cells. 2022 Mar 12;11(6):976. doi: 10.3390/cells11060976.
The maturation of hemeprotein dictates that they incorporate heme and become active, but knowledge of this essential cellular process remains incomplete. Studies on chaperon Hsp90 has revealed that it drives functional heme maturation of inducible nitric oxide synthase (iNOS), soluble guanylate cyclase (sGC) hemoglobin (Hb) and myoglobin (Mb) along with other proteins including GAPDH, while globin heme maturations also need an active sGC. In all these cases, Hsp90 interacts with the heme-free or apo-protein and then drives the heme maturation by an ATP dependent process before dissociating from the heme-replete proteins, suggesting that it is a key player in such heme-insertion processes. As the studies on globin maturation also need an active sGC, it connects the globin maturation to the NO-sGC (Nitric oxide-sGC) signal pathway, thereby constituting a novel NO-sGC-Globin axis. Since many aggressive cancer cells make Hbβ/Mb to survive, the dependence of the globin maturation of cancer cells places the NO-sGC signal pathway in a new light for therapeutic intervention. Given the ATPase function of Hsp90 in heme-maturation of client hemeproteins, Hsp90 inhibitors often cause serious side effects and this can encourage the alternate use of sGC activators/stimulators in combination with specific Hsp90 inhibitors for better therapeutic intervention.
血红素蛋白的成熟决定了它们需要结合血红素并变得活跃,但这一重要的细胞过程的知识仍然不完整。对伴侣蛋白 Hsp90 的研究表明,它可以驱动诱导型一氧化氮合酶(iNOS)、可溶性鸟苷酸环化酶(sGC)、血红蛋白(Hb)和肌红蛋白(Mb)等蛋白质的功能性血红素成熟,同时还包括 GAPDH 等其他蛋白质,而球蛋白血红素的成熟也需要一个活跃的 sGC。在所有这些情况下,Hsp90 与无血红素或脱辅基蛋白相互作用,然后通过依赖 ATP 的过程驱动血红素成熟,之后与血红素饱和的蛋白质分离,这表明它是这种血红素插入过程中的关键参与者。由于球蛋白成熟的研究也需要一个活跃的 sGC,它将球蛋白成熟与 NO-sGC(一氧化氮-sGC)信号通路联系起来,从而构成了一个新的 NO-sGC-球蛋白轴。由于许多侵袭性癌细胞会产生 Hbβ/Mb 以存活,因此癌细胞的球蛋白成熟依赖于 NO-sGC 信号通路,为治疗干预提供了新的视角。鉴于 Hsp90 在客户血红素蛋白血红素成熟中的 ATP 酶功能,Hsp90 抑制剂通常会引起严重的副作用,这可能会鼓励交替使用 sGC 激活剂/刺激剂与特定的 Hsp90 抑制剂,以进行更好的治疗干预。