RLP-FUNCTION · Structure / Function analysis of RLPs
FP6 — Marie Curie Actions (Human Resources and Mobility)
- Duration
- 2005-03-01 → 2007-02-28
- EU contribution
- €158,479
- Participants
- 1
- Scheme
- IIF
Lines connect the coordinator with its partners.
Results in brief
Final Activity Report Summary - RLP-FUNCTION (Structure / Function analysis of RLPs)
When I first start in 2004, some work done in the Jones lab on Arabidopsis homolog of Cf-9 revealed conserved amino acids in various domains of Cf-9. Our hypothesis was that this conservation might play a role in Cf-9 function. The first part of my project was to investigate the functional significance of amino acids conserved between Cf-9 and Arabidopsis RLPs. I focused my research on two main areas: C2, TM and juxta-TM regions. I used transient assays of mutated Cf-9 alleles in Nicotiana benthamiana (Nb) lines that express Avr9. My results clearly showed that the expression of most of the mutants did not show any HR after transient expression in plants carrying Avr9 gene. This demonstrated that those conserved amino acids are crucial for Cf-9 function. In order to follow the accumulation of the protein, and its membrane association, I designed a new antibody raised against C2 domain of Cf-9, which is as well able to detect Cf-4 (protein very close to Cf-9). As bioinformatics study in Jones lab of Cf-9 TM region revealed 2 GxxxG motifs, involved in protein homo- or hetero-dimerisation, it is likely that Cf-9 is involved in a protein complex to be functional. Moreover, I showed by site-directed mutagenesis that some amino acids in the C2 domain must have an interaction with other partner to be able to induce HR. So we decided to try to identify partner proteins by virus-induced gene silencing (Vigs) approach on 11000 cDNA clones from an Nb library. The silencing of 4 genes out of the 11 000 gave us not HR upon co-infiltration of Cf4 and Avr4, which indicate they are involved in the HR pathway. The silencing of the tomato homolog of those genes in Cf-4 expressing tomato plants showed for one of them and in a less extend for the 3 others a development of C.fulvum carrying Avr4. This, indicate that the disruption of these genes made Avr4 not able to be recognised by Cf-4. The same has been shown for Cf-9. The second part of my project was a new and risky approach to the study of the function of RLPs. The goal was to establish a Cf-/Avr response in Arabidopsis that can be used for genetic studies on Cf- signal transduction. I made chimeras between Cf- proteins and different Arabidopsis RLPs, and tested them by Agrobacterium transient assays in leaves of turnip (Brassica rapa), a system routinely used in the Jones lab to analyse RPS4 and AvrRPS4 function and Arabidopsis. The lab previously established a functional chimera between Cf-9 and Cf-2 (1). In this study, domain C1 and C2 of Cf-2 was fused to domain C3 and the rest of Cf-9. The chimera carried the Cf-2 recognition specificity (and requirement for Rcr3), but signaled using the Cf-9 C-terminal domain. This strategy was also used by He and co-worker (2) in the study of brassinosteroid perception by extra cellular domain of the receptor kinase Bri1. This was a risky approach and unfortunately we have no clear indication of success yet.
Data: CORDIS, © European Union
Project objective
Plants have evolved mechanisms to defend themselves. Defence mechanisms are often triggered after the direct or indirect interaction of a disease resistance (R) gene from the plant and an avirulence (Avr) gene from the pathogen. In the absence of the R gene or the Avr gene, disease ensues. Such gene-for- gene" interactions are known for many different pathogens and plants. R proteins can be divided into five classes based on their structure. The focus of my work will be on the Receptor-like Protein (RLP) class, of which Cf-9 is the founding member.RLPs are membrane-anchored glycoproteins with extra-cytoplasmic Leucine Rich Repeat (LRRs, a protein-protein interaction motif), a transmembrane domain and a short cytoplasmic tail lacking any obvious signalling domain. The Cf-9 protein has 27 LRRs, which are divided in two blocks. Domain Cl comprises 23 LRRs, and the second, domain C3, has 4 LRRs. In between there is a putative "hinge" region, which does not have any LRRs, called domain C2. Sequence alignments of C2 between Cf-9 and Arabidopsis RLPs (AtRLPs) reveal conserved amino acids. Amino-acids surrounding the C2 region are also well conserved.The aim of the proposed project is to:(i) investigate the functional significance of amino acids conserved between Cf-9 and Arabidopsis RLPs, using transient assays of mutated Cf-9 alleles in Nicotiana benthamiana and(ii) to make chimeras of Cf- proteins and Arabidopsis proteins, that can be transiently assessed in transient assays in turnip, to try establish a Cf-9/Avr9 response in Arabidopsis that can be used for genetic studies on Cf-9 signal transduction."
Original text from CORDIS.
Participants
- THE SAINSBURY LABORATORY · NORWICHCoordinatorUnited Kingdom
Links
Data: CORDIS, © European Union
