Bartels Andrea, Mock Hans-Peter, Papenbrock Jutta
Institute for Botany, University of Hannover, Herrenhäuserstrasse 2, D-30419 Hannover, Germany.
Plant Physiol Biochem. 2007 Mar-Apr;45(3-4):178-87. doi: 10.1016/j.plaphy.2007.02.005. Epub 2007 Feb 25.
Sulfurtransferases (Str) comprise a group of enzymes widely distributed in archaea, eubacteria, and eukaryota which catalyse the transfer of a sulfur atom from suitable sulfur donors to nucleophilic sulfur acceptors. Neither the in vivo sulfur donors nor the acceptors of Str could be clearly identified in any of the organisms investigated so far. In Arabidopsis thaliana 20 Str proteins have been identified and grouped according to sequence homology. To investigate their respective in vivo function, Arabidopsis plants were grown in sterile hydroponic cultures at different sulfate (50, 500, and 1500 microM) and phosphate (0.1 and 1mM) concentrations, and in medium supplemented with 1mM thiosulfate. Northern blot analysis revealed the differential expression of the Str investigated. Thiosulfate Str activity was significantly increased at low sulfate concentrations in the medium. The Str mRNA levels were highly dependent on the developmental stage of the Arabidopsis plants. The expression of most Str analysed increased with progressing plant age in parallel with increasing 3-mercaptopyruvate and thiosulfate Str activities. The Str investigated were differentially expressed in a light/dark cycle whereas Str enzyme activities were not affected by the light conditions. The results indicate that each Str is regulated in a different way and plays an individual specific role in the plant metabolism.
硫转移酶(Str)是一类广泛分布于古细菌、真细菌和真核生物中的酶,它们催化硫原子从合适的硫供体转移至亲核硫受体。到目前为止,在任何被研究的生物体中,都无法明确确定Str在体内的硫供体和受体。在拟南芥中,已鉴定出20种Str蛋白,并根据序列同源性进行了分类。为了研究它们各自在体内的功能,将拟南芥植株种植在不同硫酸盐(50、500和1500微摩尔)和磷酸盐(0.1和1毫摩尔)浓度的无菌水培培养液中,以及添加了1毫摩尔硫代硫酸盐的培养基中。Northern杂交分析显示所研究的Str存在差异表达。硫代硫酸盐Str活性在培养基中低硫酸盐浓度下显著增加。Str mRNA水平高度依赖于拟南芥植株的发育阶段。大多数被分析的Str的表达随着植株年龄的增长而增加,同时3-巯基丙酮酸和硫代硫酸盐Str活性也增加。所研究的Str在光/暗周期中存在差异表达,而Str酶活性不受光照条件影响。结果表明,每种Str都以不同的方式受到调控,并在植物代谢中发挥各自特定的作用。