A Two-Hybrid-Receptor Assay Demonstrates Heteromer Formation as Switch-On for Plant Immune Receptors

Author:

Albert Markus1,Jehle Anna Kristina1,Fürst Ursula1,Chinchilla Delphine2,Boller Thomas2,Felix Georg1

Affiliation:

1. Department of Plant Biochemistry, University of Tuebingen, Center for Plant Molecular Biology, Auf der Morgenstelle 32, 72076 Tuebingen, Germany (M.A., A.K.J., U.F., G.F.); and

2. Department of Environmental Science, University of Basel, Plant Science Center, Hebelstrasse 1, CH–4056 Basel, Switzerland (D.C., T.B.)

Abstract

Abstract Receptor kinases sense extracellular signals and trigger intracellular signaling and physiological responses. However, how does signal binding to the extracellular domain activate the cytoplasmic kinase domain? Activation of the plant immunoreceptor Flagellin sensing2 (FLS2) by its bacterial ligand flagellin or the peptide-epitope flg22 coincides with rapid complex formation with a second receptor kinase termed brassinosteroid receptor1 associated kinase1 (BAK1). Here, we show that the receptor pair of FLS2 and BAK1 is also functional when the roles of the complex partners are reversed by swapping their cytosolic domains. This reciprocal constellation prevents interference by redundant partners that can partially substitute for BAK1 and demonstrates that formation of the heteromeric complex is the molecular switch for transmembrane signaling. A similar approach with swaps between the Elongation factor-Tu receptor and BAK1 also resulted in a functional receptor/coreceptor pair, suggesting that a “two-hybrid-receptor assay” is of more general use for studying heteromeric receptor complexes.

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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