Ribbe M W, Burgess B K
Department of Molecular Biology and Biochemistry, University of California, Irvine, CA 92697-3900, USA.
Proc Natl Acad Sci U S A. 2001 May 8;98(10):5521-5. doi: 10.1073/pnas.101119498. Epub 2001 May 1.
It is known that an E146D site-directed variant of the Azotobacter vinelandii iron protein (Fe protein) is specifically defective in its ability to participate in iron-molybdenum cofactor (FeMoco) insertion. Molybdenum-iron protein (MoFe protein) from the strain expressing the E146D Fe protein is partially ( approximately 45%) FeMoco deficient. The "free" FeMoco that is not inserted accumulates in the cell. We were able to insert this "free" FeMoco into the partially pure FeMoco-deficient MoFe protein. This insertion reaction required crude extract of the DeltanifHDK A. vinelandii strain CA12, Fe protein and MgATP. We used this as an assay to purify a required "insertion" protein. The purified protein was identified as GroEL, based on the molecular mass of its subunit (58.8 kDa), crossreaction with commercially available antibodies raised against E. coli GroEL, and its NH(2)-terminal polypeptide sequence. The NH(2)-terminal polypeptide sequence showed identity of up to 84% to GroEL from various organisms. Purified GroEL of A. vinelandii alone or in combination with MgATP and Fe protein did not support the FeMoco insertion into pure FeMoco-deficient MoFe protein, suggesting that there are still other proteins and/or factors missing. By using GroEL-containing extracts from a DeltanifHDK strain of A. vinelandii CA12 along with FeMoco, Fe protein, and MgATP, we were able to supply all required proteins and/or factors and obtained a fully active reconstituted E146D nifH MoFe protein. The involvement of the molecular chaperone GroEL in the insertion of a metal cluster into an apoprotein may have broad implications for the maturation of other metalloenzymes.
已知棕色固氮菌铁蛋白(Fe蛋白)的E146D位点定向变体在参与铁钼辅因子(FeMoco)插入的能力方面存在特异性缺陷。表达E146D Fe蛋白的菌株的钼铁蛋白(MoFe蛋白)部分(约45%)缺乏FeMoco。未插入的“游离”FeMoco在细胞中积累。我们能够将这种“游离”FeMoco插入部分纯化的缺乏FeMoco的MoFe蛋白中。这种插入反应需要棕色固氮菌CA12菌株的粗提取物、Fe蛋白和MgATP。我们将此用作纯化所需“插入”蛋白的分析方法。基于其亚基的分子量(58.8 kDa)、与针对大肠杆菌GroEL产生的市售抗体的交叉反应及其NH2末端多肽序列,纯化的蛋白被鉴定为GroEL。NH2末端多肽序列与来自各种生物体的GroEL的同一性高达84%。单独的棕色固氮菌纯化GroEL或与MgATP和Fe蛋白结合均不支持FeMoco插入纯的缺乏FeMoco的MoFe蛋白中,这表明仍缺少其他蛋白质和/或因子。通过使用来自棕色固氮菌CA12的DeltanifHDK菌株的含GroEL提取物以及FeMoco、Fe蛋白和MgATP,我们能够提供所有所需的蛋白质和/或因子,并获得了完全活性的重组E146D nifH MoFe蛋白。分子伴侣GroEL参与将金属簇插入脱辅基蛋白可能对其他金属酶的成熟具有广泛影响。