Melkani Girish C, Zardeneta Gustavo, Mendoza Jose A
Department of Chemistry and Biochemistry, California State University San Marcos, San Marcos, California 92096-0001, USA.
Front Biosci. 2004 Jan 1;9:724-31. doi: 10.2741/1258.
Here, we report on the facilitated reactivation (85%) of oxidatively inactivated rhodanese by an oxidized form of the molecular chaperone GroEL (ox-GroEL). Reactivation by ox-GroEL required a reductant, and the enzyme substrate, sodium thiosulfate. Also, we found that ox-GroEL formed a complex with oxidatively inactivated rhodanese as shown by differential centrifugation and fluorescence spectroscopy. Ox-GroEL was obtained upon incubation of native GroEL for 16 h with 5 mM hydrogen peroxide. Under these conditions, GroEL was shown to retain its quaternary and secondary structures, but it displayed an increased exposure of hydrophobic surfaces as detected with 1,1'-bis(4-anilino) naphthalene-5,5'-disulfonic acid (bisANS) fluorescence. Additionally, ox-GroEL was significantly more sensitive towards proteolysis with trypsin compared to the native form of the protein. The oxidatively inactivated form of rhodanese, also had an increased exposure of hydrophobic surfaces, as previously reported. Thus, the proteins binding appeared to be mediated by hydrophobic interactions. Unlike in prior reactivation studies that involved native GroEL or alpha-crystallin, we have clearly shown that an oxidized form of GroEL can function as a molecular chaperone in the reactivation of oxidatively inactivated rhodanese suggesting that GroEL retains the ability to protect proteins during oxidative stress.
在此,我们报告了分子伴侣GroEL的氧化形式(ox-GroEL)对氧化失活的硫氰酸酶的促进再活化作用(85%)。ox-GroEL介导的再活化需要一种还原剂以及酶底物硫代硫酸钠。此外,通过差速离心和荧光光谱分析表明,ox-GroEL与氧化失活的硫氰酸酶形成了复合物。将天然GroEL与5 mM过氧化氢孵育16小时后可得到ox-GroEL。在这些条件下,GroEL的四级结构和二级结构得以保留,但用1,1'-双(4-苯胺基)萘-5,5'-二磺酸(bisANS)荧光检测发现其疏水表面的暴露增加。此外,与天然形式的蛋白质相比,ox-GroEL对胰蛋白酶的蛋白水解作用更为敏感。如先前报道的那样,硫氰酸酶的氧化失活形式其疏水表面的暴露也增加。因此,蛋白质之间的结合似乎是由疏水相互作用介导的。与之前涉及天然GroEL或α-晶状体蛋白的再活化研究不同,我们清楚地表明,GroEL的氧化形式在氧化失活的硫氰酸酶的再活化过程中可作为分子伴侣发挥作用,这表明GroEL在氧化应激期间保留了保护蛋白质的能力。