Pickering Ingrid J, Sneeden Eileen Yu, Prince Roger C, Block Eric, Harris Hugh H, Hirsch Gregory, George Graham N
Department of Geological Sciences, University of Saskatchewan, 114 Science Place, Saskatoon, Saskatchewan S7N 5E2, Canada.
Biochemistry. 2009 Jul 28;48(29):6846-53. doi: 10.1021/bi900368x.
Sulfur has a particularly rich biochemistry and fills a number of important roles in biology. In situ information on sulfur biochemistry is generally difficult to obtain because of a lack of biophysical techniques that have sufficient sensitivity to molecular form. We have recently reported that sulfur K-edge X-ray absorption spectroscopy can be used as a direct probe of the sulfur biochemistry of living mammalian cells [Gnida, M., et al. (2007) Biochemistry 46, 14735-14741]. Here we report an extension of this work and develop sulfur K-edge X-ray fluorescence spectroscopic imaging as an in vivo probe of sulfur metabolism in living cells. For this work, we have chosen onion (Allium cepa) as a tractable model system with well-developed sulfur biochemistry and present evidence of the localization of a number of different chemical forms. X-ray absorption spectroscopy of onion sections showed increased levels of lachrymatory factor (LF) and thiosulfinate and decreased levels of sulfoxide (LF precursor) following cell breakage. In intact cells, X-ray fluorescence spectroscopic imaging showed elevated levels of sulfoxides in the cytosol and elevated levels of reduced sulfur in the central transport vessels and bundle sheath cells.
硫具有特别丰富的生物化学性质,并在生物学中发挥着许多重要作用。由于缺乏对分子形式具有足够灵敏度的生物物理技术,关于硫生物化学的原位信息通常难以获得。我们最近报道,硫K边X射线吸收光谱可作为活的哺乳动物细胞硫生物化学的直接探针[Gnida, M., 等人 (2007) Biochemistry 46, 14735 - 14741]。在此,我们报告这项工作的扩展,并开发硫K边X射线荧光光谱成像作为活细胞中硫代谢的体内探针。对于这项工作,我们选择洋葱(葱属植物洋葱)作为具有发达硫生物化学的易于处理的模型系统,并展示了多种不同化学形式定位的证据。洋葱切片的X射线吸收光谱显示,细胞破裂后催泪因子(LF)和硫代亚磺酸盐水平升高,而亚砜(LF前体)水平降低。在完整细胞中,X射线荧光光谱成像显示,细胞质中亚砜水平升高,中央运输血管和维管束鞘细胞中还原态硫水平升高。