Singh B B, Curdt I, Shomburg D, Bisen P S, Böhme H
Botanisches Institut der Universität Bonn, Germany.
Mol Cell Biochem. 2001 Jan;217(1-2):137-42. doi: 10.1023/a:1007228929662.
Ferredoxins are small iron sulfur proteins necessary for electron donation. FdxH1 and FdxH2 are associated with two different nif gene clusters where they transfer electrons for the reduction of nitrogenase complex. FdxH1 was observed to be stable towards oxygen, whereas, FdxH2 was relatively unstable. We had identified the amino acid involved in oxygen sensitivity of ferredoxin protein using protein modeling. The exchange of valine to leucine at position 77 was critical for ferredoxin proteins in relation to its oxygen sensitivity. This exchange leads to a longer side chain, which inhibits the accessibility of oxygen to the iron sulfur cluster. Site directed mutagenesis and in vitro experiments confirms that valine indeed is involved in the oxygen sensitivity. The exchange of leucine to valine in FdxH1 makes it oxygen unstable. Thus, from the above results we can conclude that the position of leucine at position 77 is critical for oxygen sensitivity of ferredoxin and protein modeling can be used to identify specific amino acids in other oxygen-sensitive proteins.
铁氧化还原蛋白是电子供体所必需的小铁硫蛋白。FdxH1和FdxH2与两个不同的固氮基因簇相关联,在那里它们转移电子以还原固氮酶复合物。观察到FdxH1对氧气稳定,而FdxH2相对不稳定。我们通过蛋白质建模确定了参与铁氧化还原蛋白对氧敏感性的氨基酸。第77位缬氨酸与亮氨酸的交换对于铁氧化还原蛋白的氧敏感性至关重要。这种交换导致侧链更长,从而抑制了氧气与铁硫簇的接触。定点诱变和体外实验证实缬氨酸确实与氧敏感性有关。FdxH1中亮氨酸与缬氨酸的交换使其对氧不稳定。因此,从上述结果我们可以得出结论,第77位亮氨酸的位置对于铁氧化还原蛋白的氧敏感性至关重要,并且蛋白质建模可用于识别其他氧敏感蛋白中的特定氨基酸。