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2N88

Chromodomain 3 (CD3) of cpSRP43

Summary for 2N88
Entry DOI10.2210/pdb2n88/pdb
NMR InformationBMRB: 25837
DescriptorSignal recognition particle 43 kDa protein, chloroplastic (1 entity in total)
Functional Keywordschromodomain, srp, plant signaling, membrane trafficking, cpsrp, protein binding
Biological sourceArabidopsis thaliana (mouse-ear cress)
Cellular locationPlastid, chloroplast stroma : O22265
Total number of polymer chains1
Total formula weight6580.23
Authors
Hennig, J.,Sattler, M. (deposition date: 2015-10-06, release date: 2015-12-09, Last modification date: 2024-05-15)
Primary citationHorn, A.,Hennig, J.,Ahmed, Y.L.,Stier, G.,Wild, K.,Sattler, M.,Sinning, I.
Structural basis for cpSRP43 chromodomain selectivity and dynamics in Alb3 insertase interaction.
Nat Commun, 6:8875-8875, 2015
Cited by
PubMed Abstract: Canonical membrane protein biogenesis requires co-translational delivery of ribosome-associated proteins to the Sec translocase and depends on the signal recognition particle (SRP) and its receptor (SR). In contrast, high-throughput delivery of abundant light-harvesting chlorophyll a,b-binding proteins (LHCPs) in chloroplasts to the Alb3 insertase occurs post-translationally via a soluble transit complex including the cpSRP43/cpSRP54 heterodimer (cpSRP). Here we describe the molecular mechanisms of tethering cpSRP to the Alb3 insertase by specific interaction of cpSRP43 chromodomain 3 with a linear motif in the Alb3 C-terminal tail. Combining NMR spectroscopy, X-ray crystallography and biochemical analyses, we dissect the structural basis for selectivity of chromodomains 2 and 3 for their respective ligands cpSRP54 and Alb3, respectively. Negative cooperativity in ligand binding can be explained by dynamics in the chromodomain interface. Our study provides a model for membrane recruitment of the transit complex and may serve as a prototype for a functional gain by the tandem arrangement of chromodomains.
PubMed: 26568381
DOI: 10.1038/ncomms9875
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Experimental method
SOLUTION NMR
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