Department of Physiology, Harbin Medical University, Harbin, People's Republic of China.
PLoS One. 2012;7(5):e37556. doi: 10.1371/journal.pone.0037556. Epub 2012 May 23.
The heme acquisition machinery in Group A Streptococcus (GAS) consists of the surface proteins Shr and Shp and ATP-binding cassette transporter HtsABC. Shp cannot directly acquire heme from methemoglobin (metHb) but directly transfers its heme to HtsA. It has not been previously determined whether Shr directly relays heme from metHb to Shp. Thus, the complete pathway for heme acquisition from metHb by the GAS heme acquisition machinery has remained unclear. In this study, the metHb-to-Shr and Shr-to-Shp heme transfer reactions were characterized by spectroscopy, kinetics and protein-protein interaction analyses. Heme is efficiently transferred from the β and α subunits of metHb to Shr with rates that are 7 and 60 times greater than those of the passive heme release from metHb, indicating that Shr directly acquires heme from metHb. The rapid heme transfer from Shr to Shp involves an initial heme donor/acceptor complex and a spectrally and kinetically detectable transfer intermediate, implying that heme is directly channeled from Shr to Shp. The present results show that Shr speeds up heme transfer from metHb to Shp, whereas Shp speeds up heme transfer from Shr to HtsA. Furthermore, the findings demonstrate that Shr can interact with metHb and Shp but not HtsA. Taken together with our published results on the Shp/HtsA reaction, these findings establish a model of the heme acquisition pathway in GAS in which Shr directly extracts heme from metHb and Shp relays it from Shr to HtsA.
A 群链球菌(GAS)的血红素获取机制由表面蛋白 Shr 和 Shp 以及 ATP 结合盒转运蛋白 HtsABC 组成。Shp 不能直接从高铁血红蛋白(metHb)中获取血红素,但可以直接将其血红素转移给 HtsA。以前尚未确定 Shr 是否直接将血红素从 metHb 传递给 Shp。因此,GAS 血红素获取机制从 metHb 中获取血红素的完整途径仍不清楚。在这项研究中,通过光谱学、动力学和蛋白质-蛋白质相互作用分析来表征 metHb 到 Shr 和 Shr 到 Shp 的血红素转移反应。血红素从 metHb 的β和α亚基有效地转移到 Shr,其速率比 metHb 中血红素的被动释放速率快 7 倍和 60 倍,表明 Shr 直接从 metHb 中获取血红素。血红素从 Shr 到 Shp 的快速转移涉及初始血红素供体/受体复合物和光谱和动力学上可检测的转移中间物,这意味着血红素直接从 Shr 转移到 Shp。目前的结果表明 Shr 加速了血红素从 metHb 到 Shp 的转移,而 Shp 加速了血红素从 Shr 到 HtsA 的转移。此外,这些发现表明 Shr 可以与 metHb 和 Shp 相互作用,但不能与 HtsA 相互作用。结合我们之前关于 Shp/HtsA 反应的研究结果,这些发现建立了 GAS 血红素获取途径的模型,其中 Shr 直接从 metHb 中提取血红素,而 Shp 将其从 Shr 中继到 HtsA。