Department of Botany, Graduate School of Science, Kyoto University, Sakyo-ku, Kyoto, Japan.
PLoS Biol. 2011 Apr;9(4):e1001040. doi: 10.1371/journal.pbio.1001040. Epub 2011 Apr 5.
Type I chaperonins are large, double-ring complexes present in bacteria (GroEL), mitochondria (Hsp60), and chloroplasts (Cpn60), which are involved in mediating the folding of newly synthesized, translocated, or stress-denatured proteins. In Escherichia coli, GroEL comprises 14 identical subunits and has been exquisitely optimized to fold its broad range of substrates. However, multiple Cpn60 subunits with different expression profiles have evolved in chloroplasts. Here, we show that, in Arabidopsis thaliana, the minor subunit Cpn60β4 forms a heterooligomeric Cpn60 complex with Cpn60α1 and Cpn60β1-β3 and is specifically required for the folding of NdhH, a subunit of the chloroplast NADH dehydrogenase-like complex (NDH). Other Cpn60β subunits cannot complement the function of Cpn60β4. Furthermore, the unique C-terminus of Cpn60β4 is required for the full activity of the unique Cpn60 complex containing Cpn60β4 for folding of NdhH. Our findings suggest that this unusual kind of subunit enables the Cpn60 complex to assist the folding of some particular substrates, whereas other dominant Cpn60 subunits maintain a housekeeping chaperonin function by facilitating the folding of other obligate substrates.
I 型分子伴侣是存在于细菌(GroEL)、线粒体(Hsp60)和叶绿体(Cpn60)中的大环双环复合物,参与介导新合成、易位或应激变性蛋白质的折叠。在大肠杆菌中,GroEL 由 14 个相同的亚基组成,并且已经被精妙地优化以折叠其广泛的底物。然而,在叶绿体中已经进化出了具有不同表达谱的多个 Cpn60 亚基。在这里,我们表明,在拟南芥中,次要亚基 Cpn60β4 与 Cpn60α1 和 Cpn60β1-β3 形成异源寡聚 Cpn60 复合物,并且特异性地需要 Cpn60β4 折叠叶绿体 NADH 脱氢酶样复合物(NDH)的亚基 NdhH。其他 Cpn60β 亚基不能补充 Cpn60β4 的功能。此外,Cpn60β4 的独特 C 末端对于包含 Cpn60β4 的独特 Cpn60 复合物折叠 NdhH 的全部活性是必需的。我们的研究结果表明,这种特殊的亚基使 Cpn60 复合物能够辅助一些特殊底物的折叠,而其他主要的 Cpn60 亚基通过促进其他必需底物的折叠来维持管家分子伴侣功能。