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Jutras, P. V.

Publications and source records attributed to Jutras, P. V..

2 recordsLinked to original sources

NbRD21 protease controls receptor kinase homeostasis in Nicotiana benthamiana

RD21-like proteases are papain-like cysteine proteases with a C-terminal granulin domain that are abundant and ubiquitous in angiosperms and have often been implicated in immunity. We previously found that the activity of RD21 in Nicotiana benthamiana (NbRD21) is suppressed during infection with Pseudomonas syringae. Here, we studied the role of NbRD21 in immunity and proteome processing. NbRD21 was disrupted by genome editing and rd21 mutants were subjected to disease assays and shot-gun proteomics. Dipeptide substrate zLR-AMC was used in protease assays and agroinfiltration was used to transiently express NbRD21 and candidate substrates. Genome edited lines lacking NbRD21 develop normally but have drastically reduced zLRase activity and are significantly more susceptible to P. syringae. Shot gun proteomics revealed an increased accumulation of [~]20 diverse receptor-like kinases (RLKs) in untreated rd21 knockout lines, but their transcript levels are unaltered when compared to wild-type plants. 35S-driven GFP-tagged RLKs accumulate more upon transient expression in rd21 plants than in wild- type plants. These data indicate that NbRD21 post-translationally controls RLK homeostasis, either by directly degrading RLKs, or indirectly by regulating endocytic RLK recycling.

plant biology↗

SBT5.2s are the major active extracellular subtilases processing IgG antibody 2F5 in the Nicotiana benthamiana apoplast

Plants offer a powerful platform for recombinant protein production but degradation of recombinant proteins by endogenous proteases is causing severe yield losses. Here, we introduce triple knockout lines for SBT5.2, the major active subtilases in the apoplast of agroinfiltrated Nicotiana benthamiana. HIV-neutralising IgG antibody 2F5 is no longer cleaved in the apoplast of sbt5.2 mutants and these mutants accumulate 3-fold more 2F5 upon transient expression but grow normally. Remarkably, however, 2F5 does not accumulate in the apoplast and is not exposed to SBT5.2 when transiently expressed, uncovering an important controversy regarding the subcellular localisation of IgGs in agroinfiltrated plants.

plant biology↗