de Graffenried Christopher L, Laughlin Scott T, Kohler Jennifer J, Bertozzi Carolyn R
Department of Chemistry, University of California, Berkeley, CA 94720-1460, USA.
Proc Natl Acad Sci U S A. 2004 Nov 30;101(48):16715-20. doi: 10.1073/pnas.0403681101. Epub 2004 Nov 17.
The study of glycan function is a major frontier in biology that could benefit from small molecules capable of perturbing carbohydrate structures on cells. The widespread role of sulfotransferases in modulating glycan function makes them prime targets for small-molecule modulators. Here, we report a system for conditional activation of Golgi-resident sulfotransferases using a chemical inducer of dimerization. Our approach capitalizes on two features shared by these enzymes: their requirement of Golgi localization for activity on cellular substrates and the modularity of their catalytic and localization domains. Fusion of these domains to the proteins FRB and FKBP enabled their induced assembly by the natural product rapamycin. We applied this strategy to the GlcNAc-6-sulfotransferases GlcNAc6ST-1 and GlcNAc6ST-2, which collaborate in the sulfation of L-selectin ligands. Both the activity and specificity of the inducible enzymes were indistinguishable from their WT counterparts. We further generated rapamycin-inducible chimeric enzymes comprising the localization domain of a sulfotransferase and the catalytic domain of a glycosyltransferase, demonstrating the generality of the system among other Golgi enzymes. The approach provides a means for studying sulfate-dependent processes in cellular systems and, potentially, in vivo.
聚糖功能的研究是生物学中的一个主要前沿领域,小分子能够干扰细胞上的碳水化合物结构,这可能会对该领域有所助益。磺基转移酶在调节聚糖功能方面具有广泛作用,这使其成为小分子调节剂的主要作用靶点。在此,我们报道了一种利用化学诱导二聚化来条件性激活高尔基体驻留磺基转移酶的系统。我们的方法利用了这些酶共有的两个特性:它们在细胞底物上发挥活性需要高尔基体定位,以及它们催化结构域和定位结构域的模块化。将这些结构域与FRB和FKBP蛋白融合,使得它们能够通过天然产物雷帕霉素诱导组装。我们将此策略应用于N-乙酰葡糖胺-6-磺基转移酶GlcNAc6ST-1和GlcNAc6ST-2,它们在L-选择素配体的硫酸化过程中协同作用。诱导型酶的活性和特异性与野生型对应物没有区别。我们进一步构建了雷帕霉素诱导型嵌合酶,其包含磺基转移酶的定位结构域和糖基转移酶的催化结构域,证明了该系统在其他高尔基体酶中的通用性。该方法为在细胞系统以及潜在地在体内研究硫酸盐依赖性过程提供了一种手段。