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Ionic self-complementarity induces amyloid-like fibril formation in an isolated domain of a plant copper metallochaperone protein

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dc.creator Mira, Helena
dc.creator Vilar, Marçal
dc.creator Esteve, Vicent
dc.creator Martinell, Marc
dc.creator Kogan, Marcelo J.
dc.creator Giralt, Ernest
dc.creator Salom, David
dc.creator Mingarro, Ismael
dc.creator Peñarrubia, Lola
dc.creator Pérez-Payá, Enrique
dc.date 2007-05-08T13:50:00Z
dc.date 2007-05-08T13:50:00Z
dc.date 2004-06-04
dc.date.accessioned 2017-01-31T00:57:10Z
dc.date.available 2017-01-31T00:57:10Z
dc.identifier BMC Structural Biology 2004, 4:7
dc.identifier 1472-6807
dc.identifier http://hdl.handle.net/10261/1422
dc.identifier.uri http://dspace.mediu.edu.my:8181/xmlui/handle/10261/1422
dc.description This article is available from: http://www.biomedcentral.com/1472-6807/4/7
dc.description [Background] Arabidopsis thaliana copper metallochaperone CCH is a functional homologue of yeast antioxidant ATX1, involved in cytosolic copper transport. In higher plants, CCH has to be transported to specialised cells through plasmodesmata, being the only metallochaperone reported to date that leaves the cell where it is synthesised. CCH has two different domains, the N-terminal domain conserved among other copper-metallochaperones and a C-terminal domain absent in all the identified non-plant metallochaperones. The aim of the present study was the biochemical and biophysical characterisation of the C-terminal domain of the copper metallochaperone CCH.
dc.description [Results] The conformational behaviour of the isolated C-domain in solution is complex and implies the adoption of mixed conformations in different environments. The ionic self-complementary peptide KTEAETKTEAKVDAKADVE, derived from the C-domain of CCH, adopts and extended conformation in solution with a high content in β-sheet structure that induces a pH-dependent fibril formation. Freeze drying electron microscopy studies revealed the existence of well ordered amyloid-like fibrils in preparations from both the C-domain and its derivative peptide.
dc.description [Conclusion] A number of proteins related with copper homeostasis have a high tendency to form fibrils. The determinants for fibril formation, as well as the possible physiological role are not fully understood. Here we show that the plant exclusive C-domain of the copper metallochaperone CCH has conformational plasticity and forms fibrils at defined experimental conditions. The putative influence of these properties with plant copper delivery will be addressed in the future.
dc.description This work was supported by grants BIO4-CT97-2086 (EU Biotechnology), SAF01-2811, BIO2002-1125 and BIO2002-2301 (MCyT and FEDER), and Generalitat de Catalunya (Grups Consolidats de Recerca and Centre de Referència en Biotecnologia).
dc.description Peer reviewed
dc.language eng
dc.publisher BioMed Central
dc.relation Publisher’s version
dc.rights openAccess
dc.title Ionic self-complementarity induces amyloid-like fibril formation in an isolated domain of a plant copper metallochaperone protein
dc.type Artículo


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