Benisch Robert, Giessen Tobias W
Program in Chemical Biology, University of Michigan, Ann Arbor, MI 48109, USA.
Department of Biological Chemistry, University of Michigan Medical School, Ann Arbor, MI 48109, USA.
bioRxiv. 2024 Mar 5:2024.02.19.581022. doi: 10.1101/2024.02.19.581022.
Rhodanese-like domains (RLDs) represent a widespread protein family canonically involved in sulfur transfer reactions between diverse donor and acceptor molecules. RLDs mediate these transsulfuration reactions via a transient persulfide intermediate, created by modifying a conserved cysteine residue in their active sites. RLDs are involved in various aspects of sulfur metabolism, including sulfide oxidation in mitochondria, iron-sulfur cluster biogenesis, and thio-cofactor biosynthesis. However, due to the inherent complexity of sulfur metabolism caused by the intrinsically high nucleophilicity and redox sensitivity of thiol-containing compounds, the physiological functions of many RLDs remain to be explored. Here, we focus on a single domain RLD (Ab-RLD) associated with a desulfurase encapsulin which is able to store substantial amounts of sulfur inside its protein shell. We determine the 1.6 Å x-ray crystal structure of Ab-RLD, highlighting a homodimeric structure with a number of unusual features. We show through kinetic analysis that Ab-RLD exhibits thiosulfate sulfurtransferase activity with both cyanide and glutathione acceptors. Using native mass spectrometry and assays, we provide evidence that Ab-RLD can stably carry a persulfide and thiosulfate modification and may employ a ternary catalytic mechanism. Our results will inform future studies aimed at investigating the functional link between Ab-RLD and the desulfurase encapsulin.
类硫氰酸酶结构域(RLDs)代表了一个广泛存在的蛋白质家族,通常参与不同供体和受体分子之间的硫转移反应。RLDs通过一个短暂的过硫化物中间体介导这些转硫反应,该中间体是通过修饰其活性位点上的一个保守半胱氨酸残基而形成的。RLDs参与硫代谢的各个方面,包括线粒体中的硫化物氧化、铁硫簇生物合成和硫代辅因子生物合成。然而,由于含硫醇化合物固有的高亲核性和氧化还原敏感性导致硫代谢具有内在复杂性,许多RLDs的生理功能仍有待探索。在这里,我们聚焦于与一种脱硫酶封装蛋白相关的单个结构域RLD(Ab-RLD),该封装蛋白能够在其蛋白壳内储存大量的硫。我们确定了Ab-RLD的1.6 Å X射线晶体结构,突出显示了具有许多不寻常特征的同二聚体结构。我们通过动力学分析表明,Ab-RLD对氰化物和谷胱甘肽受体均表现出硫代硫酸盐硫转移酶活性。使用原生质谱和检测方法,我们提供了证据表明Ab-RLD可以稳定地携带过硫化物和硫代硫酸盐修饰,并且可能采用三元催化机制。我们的结果将为未来旨在研究Ab-RLD与脱硫酶封装蛋白之间功能联系的研究提供信息。