Bartels Andrea, Forlani Fabio, Pagani Silvia, Papenbrock Jutta
Institut für Botanik, Universität Hannover, Herrenhäuserstr. 2, D-30419 Hannover, Germany.
Biol Chem. 2007 Jan;388(1):53-9. doi: 10.1515/BC.2007.006.
Sulfurtransferases/rhodaneses (Str) are enzymes widely distributed in archaea, prokaryota and eukaryota, and catalyze the transfer of sulfur from a donor molecule to a thiophilic acceptor substrate. In this reaction, Str cycles between the sulfur-free and the sulfur-substituted form. Two-domain Str consist of two globular domains of nearly identical size and conformation connected by a short linker sequence, which is elongated in plant two-domain Str proteins compared to Str in other organisms. The two-domain Arabidopsis thaliana Str1 protein (At1g79230) was expressed in Escherichia coli as a mature protein, as a variant without the elongated linker sequence, and as AtStr1C332S and AtStr1C339V. The persulfuration state of the purified recombinant proteins was investigated in the presence and absence of sulfur donors by fluorescence spectroscopy. The secondary structure was analyzed by circular dichroism (CD) in the far-UV range, while overall changes in tertiary structure were determined by CD in the near-UV range. Finally, protein stability was analyzed by tryptic digestion. The elongated linker sequence is essential for correct conformation and stability, and thereby affects the catalytic activity of AtStr1. Replacement of the catalytic cysteine residue C332 leads to higher rigidity of the molecule, whereas replacement of C339 does not lead to any conformational changes, providing evidence of the direct involvement of C339 in catalysis.
硫转移酶/硫氰酸酶(Str)是广泛分布于古细菌、原核生物和真核生物中的酶,催化硫从供体分子转移至亲硫受体底物。在该反应中,Str在无硫形式和硫取代形式之间循环。双结构域Str由两个大小和构象几乎相同的球状结构域组成,通过短连接序列相连,与其他生物体中的Str相比,植物双结构域Str蛋白中的连接序列有所延长。双结构域拟南芥Str1蛋白(At1g79230)在大肠杆菌中作为成熟蛋白、无延长连接序列的变体、AtStr1C332S和AtStr1C339V表达。通过荧光光谱法研究了纯化重组蛋白在有和无硫供体存在下的过硫化状态。在远紫外范围内通过圆二色性(CD)分析二级结构,而在近紫外范围内通过CD确定三级结构的整体变化。最后,通过胰蛋白酶消化分析蛋白质稳定性。延长的连接序列对于正确的构象和稳定性至关重要,从而影响AtStr1的催化活性。催化半胱氨酸残基C332的替换导致分子刚性增加,而C339的替换不会导致任何构象变化,这为C339直接参与催化提供了证据。