Correction: Type III Effector Activation via Nucleotide Binding, Phosphorylation, and Host Target Interaction

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Correction: Type III Effector Activation via Nucleotide Binding, Phosphorylation, and Host Target Interaction

V128A þ þ NA NA þ NA D155, A162 contact Q208A 6 þ NA þ þ NA H167 contact R209A 6 6 NA þ þ NA F169 contact QRY/AAA 6 6 6 NA NA H167, F169, and C-term contact D213A þ þ NA NA NA NA W154 H-bond H217A 6 6 NA NA T166 H-bond Q265A þ þ NA NA þ NA I168 contact T182A þ þ NA NA þ NA F151 contact R266A þ NA þ Y165 contact (RIN4); b-Phosphate H-bond (ADP) L109A þ þ NA NA þ NA Y165 contact (RIN4); position ...

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Type III Effector Activation via Nucleotide Binding, Phosphorylation, and Host Target Interaction

The Pseudomonas syringae type III effector protein avirulence protein B (AvrB) is delivered into plant cells, where it targets the Arabidopsis RIN4 protein (resistance to Pseudomonas maculicula protein 1 [RPM1]-interacting protein). RIN4 is a regulator of basal host defense responses. Targeting of RIN4 by AvrB is recognized by the host RPM1 nucleotide-binding leucine-rich repeat disease resista...

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Host-mediated phosphorylation of type III effector AvrPto promotes Pseudomonas virulence and avirulence in tomato.

The AvrPto protein from Pseudomonas syringae pv tomato is delivered into plant cells by the bacterial type III secretion system, where it either promotes host susceptibility or, in tomato plants expressing the Pto kinase, elicits disease resistance. Using two-dimensional gel electrophoresis, we obtained evidence that AvrPto is phosphorylated when expressed in plant leaves. In vitro phosphorylat...

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Phosphorylation of HopQ1, a type III effector from Pseudomonas syringae, creates a binding site for host 14-3-3 proteins.

HopQ1 (for Hrp outer protein Q), a type III effector secreted by Pseudomonas syringae pv phaseolicola, is widely conserved among diverse genera of plant bacteria. It promotes the development of halo blight in common bean (Phaseolus vulgaris). However, when this same effector is injected into Nicotiana benthamiana cells, it is recognized by the immune system and prevents infection. Although the ...

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The roles of EPIYA sequence to perturb the cellular signaling pathways and cancer risk

Abstract It was shown that several pathogenic bacterial effector proteins contain the Glu-Pro-Ile-Tyr-Ala (EPIYA) or a similar sequence. These bacterial EPIYA effectors are delivered into host cell via type III or IV secretion system, where they undergo tyrosine phosphorylation at the EPIYA sequences, which triggers interaction with multiple host cell SH2 domain-containing proteins and thereby...

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ژورنال

عنوان ژورنال: PLoS Pathogens

سال: 2007

ISSN: 1553-7374

DOI: 10.1371/journal.ppat.0030090