Deloche O, Liberek K, Zylicz M, Georgopoulos C
Département de Biochimie Médicale, Centre Médical Universitaire, 1, rue Michel-Servet, 1211 Geneva 4, Switzerland.
J Biol Chem. 1997 Nov 7;272(45):28539-44. doi: 10.1074/jbc.272.45.28539.
The DnaK/DnaJ/GrpE heat shock proteins of Escherichia coli constitute the prototype DnaK chaperone machine. Various studies have shown that these three proteins work synergistically in a diverse array of biological functions, including protein folding and disaggregation, proteolysis, and transport across biological membranes. We have overexpressed and purified the mitochondrial Saccharomyces cerevisiae DnaJ homologue, Mdj1pDelta55, which lacks the mitochondrial presequence, and studied its biochemical properties in well defined in vitro systems. We find that Mdj1pDelta55 interacts with DnaK as judged both by an enzyme-linked immunosorbent assay, as well as stimulation of DnaK's weak ATPase activity in the presence of GrpE. In addition, Mdj1pDelta55 not only interacts with denatured firefly luciferase on its own, but also enables DnaK to bind to it in an ATP-dependent mode. Using co-immunoprecipitation assays we can demonstrate the presence of a stable Mdj1pDelta55-luciferase-DnaK complex. However, in contrast to DnaJ, Mdj1pDelta55 does not appear to interact well with certain seemingly folded proteins, such as the sigma32 heat shock transcription factor or the lambdaP DNA replication protein. Finally, Mdj1pDelta55 can substitute perfectly well for DnaJ in the refolding of denatured firefly luciferase by the DnaK chaperone machine. These studies demonstrate that Mdj1pDelta55 has conserved most of DnaJ's known biological properties, thus supporting an analogous functional role in yeast mitochondria.
大肠杆菌的DnaK/DnaJ/GrpE热休克蛋白构成了典型的DnaK伴侣机器。各种研究表明,这三种蛋白质在一系列不同的生物学功能中协同发挥作用,包括蛋白质折叠与解聚、蛋白水解以及跨生物膜运输。我们已经过表达并纯化了酿酒酵母线粒体DnaJ同源物Mdj1pDelta55,它缺少线粒体前导序列,并在明确的体外系统中研究了其生化特性。我们发现,通过酶联免疫吸附测定以及在存在GrpE的情况下对DnaK微弱ATP酶活性的刺激判断,Mdj1pDelta55与DnaK相互作用。此外,Mdj1pDelta55不仅自身能与变性的萤火虫荧光素酶相互作用,还能使DnaK以ATP依赖的方式与之结合。使用免疫共沉淀测定,我们可以证明存在稳定的Mdj1pDelta55-荧光素酶-DnaK复合物。然而,与DnaJ不同,Mdj1pDelta55似乎与某些看似折叠的蛋白质,如σ32热休克转录因子或λP DNA复制蛋白,相互作用不佳。最后,在DnaK伴侣机器对变性萤火虫荧光素酶的重折叠过程中,Mdj1pDelta55可以完美替代DnaJ。这些研究表明,Mdj1pDelta55保留了DnaJ的大部分已知生物学特性,从而支持其在酵母线粒体中具有类似的功能作用。