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Updated: Sep 15, 2026

Identification of Post-translational Modifications of Plant Protein Complexes
Published on: February 22, 2014
The insect effector CSPs activate an atypical plant TNL immune receptor
Weiwei Rao1, Tianzhu Li2, Jing Yang2
1Cooperative Innovation Center of Industrial Fermentation (Ministry of Education & Hubei Province), Key Laboratory of Fermentation Engineering (Ministry of Education), Hubei Key Laboratory of Industrial Microbiology, National "111" Center for Cellular Regulation and Molecular Pharmaceutics, Hubei University of Technology, Wuhan, 430068, China.
Key Message:
CSP-mediated activation of RCSP involves noncanonical structural and catalytic mechanisms-including BB-loop deletion, α5α6-loop insertion, and atypical catalytic residues within the RCSP-TIR domain. Chemosensory proteins (CSPs), a conserved effector family in phloem-feeding insects such as aphids and the brown planthopper (Nilaparvata lugens), induce dwarfism in Nicotiana benthamiana through recognition by the Toll-interleukin-1 receptor (TIR) domain-containing nucleotide-binding leucine-rich repeat receptor (TNL) RCSP. However, CSP-mediated RCSP activation and enzymatic mechanism remain unknown. Here, we show that TIR domain of RCSP (RCSP-TIR) exhibits unique features, including a 9-amino acid deletion in the loop between β-strand B and α-helix B (BB-loop), an 8-amino acid insertion in the loop between α5 and α6 (α5α6-loop), and substitution of the canonical catalytic glutamate with glutamine (E87Q). Structural analysis demonstrates that BB-loop deletion disrupts the canonical NAD⁺-binding pocket and prevents standard TIR tetramerization. Strikingly, AlphaFold3/DMFold modeling reveals that RCSP compensates via α5α6-loop insertion, forming a novel interface that stabilizes an atypical tetrameric architecture. Integrated approaches combining molecular docking and site-directed mutagenesis demonstrate that RCSP may utilize a noncanonical NAD⁺-binding pocket and depend on dual catalytic residues (D86/Q87) to mediate weak cell death. Evolutionary analysis classifies RCSP-TIR homologs into four distinct clades, highlighting Solanaceae-specific adaptations. These findings elucidate a novel plant-insect interaction mechanism in which RCSP's structural diversification enables CSPs recognition and immune signaling reprogramming.
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