Gaitanaris G A, Vysokanov A, Hung S C, Gottesman M E, Gragerov A
Institute of Cancer Research, College of Physicians and Surgeons of Columbia University, New York, New York 10032.
Mol Microbiol. 1994 Dec;14(5):861-9. doi: 10.1111/j.1365-2958.1994.tb01322.x.
Escherichia coli DnaK, DnaJ and GrpE are required for renaturation of heat-inactivated lambda Cl857 repressor (Gaitanaris et al., 1990). Here we demonstrate that in addition to the above three proteins, GroEL and GroES are necessary for the Cl857 repressor to acquire full activity at the permissive temperature. Although full-length soluble repressor is present at normal amounts, the protein has reduced specific activity and migrates abnormally on native gels. To determine where the different chaperones act in protein folding, we identified their cellular locations. DnaK and DnaJ are associated with nascent polypeptide chains in translating ribosomes. In contrast, GroEL, although it is transiently associated with newly synthesized proteins, is absent from the ribosomes. This suggests that DnaK and DnaJ play an early role in protein maturation, whereas GroEL acts at a later stage.
热灭活的λCl857阻遏蛋白复性需要大肠杆菌的DnaK、DnaJ和GrpE(盖塔纳里斯等人,1990年)。在此我们证明,除上述三种蛋白质外,GroEL和GroES对于Cl857阻遏蛋白在允许温度下获得完全活性也是必需的。尽管全长可溶性阻遏蛋白的含量正常,但该蛋白的比活性降低,并且在天然凝胶上迁移异常。为了确定不同伴侣蛋白在蛋白质折叠过程中的作用位置,我们确定了它们在细胞内的位置。DnaK和DnaJ与正在翻译的核糖体中的新生多肽链相关联。相比之下,GroEL虽然与新合成的蛋白质短暂相关,但在核糖体中不存在。这表明DnaK和DnaJ在蛋白质成熟过程中起早期作用,而GroEL在后期起作用。