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Structural and Functional Analysis of SGT1 Reveals That Its Interaction with HSP90 Is Required for the Accumulation of Rx an R Protein Involved in Plant Immunity

机译:SGT1的结构和功能分析表明其与HSP90的相互作用是Rx(一种涉及植物免疫的R蛋白)积累所必需的。

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摘要

SGT1 (for suppressor of G2 allele of skp1) and RAR1 (for required for Mla12 resistance) are highly conserved eukaryotic proteins that interact with the molecular chaperone HSP90 (for heat shock protein90). In plants, SGT1, RAR1, and HSP90 are essential for disease resistance triggered by a number of resistance (R) proteins. Here, we present structural and functional characterization of plant SGT1 proteins. Random mutagenesis of Arabidopsis thaliana SGT1b revealed that its CS (for CHORD-SGT1) and SGS (for SGT1 specific) domains are essential for disease resistance. NMR-based interaction surface mapping and mutational analyses of the CS domain showed that the CHORD II domain of RAR1 and the N-terminal domain of HSP90 interact with opposite sides of the CS domain. Functional analysis of the CS mutations indicated that the interaction between SGT1 and HSP90 is required for the accumulation of Rx, a potato (Solanum tuberosum) R protein. Biochemical reconstitution experiments suggest that RAR1 may function to enhance the SGT1–HSP90 interaction by promoting ternary complex formation.
机译:SGT1(用于抑制skp1的G2等位基因)和RAR1(用于抵抗Mla12)是与分子伴侣HSP90(对于热激蛋白90)相互作用的高度保守的真核蛋白。在植物中,SGT1,RAR1和HSP90对于由许多抗性(R)蛋白触发的疾病抗性至关重要。在这里,我们介绍植物SGT1蛋白的结构和功能表征。拟南芥SGT1b的随机诱变表明,其CS(对于CHORD-SGT1)和SGS(对于SGT1特异性)域对于抗病性至关重要。 CS域的基于NMR的相互作用表面作图和突变分析表明,RAR1的CHORD II域和HSP90的N端域与CS域的相对侧相互作用。 CS突变的功能分析表明,SGT1和HSP90之间的相互作用是Rx(马铃薯(马铃薯)R蛋白)积累所必需的。生化重建实验表明,RAR1可能通过促进三元复合物的形成来增强SGT1-HSP90的相互作用。

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