The native structure and composition of the cruciferin complex in brassica napus

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dc.identifier.uri http://dx.doi.org/10.15488/11685
dc.identifier.uri https://www.repo.uni-hannover.de/handle/123456789/11778
dc.contributor.author Nietzel, Thomas eng
dc.contributor.author Dudkina, Natalya V. eng
dc.contributor.author Haase, Christin eng
dc.contributor.author Denolf, Peter eng
dc.contributor.author Semchonok, Dmitry A. eng
dc.contributor.author Boekema, Egbert J. eng
dc.contributor.author Braun, Hans-Peter eng
dc.contributor.author Sunderhaus, Stephanie eng
dc.date.accessioned 2022-01-13T14:37:49Z
dc.date.available 2022-01-13T14:37:49Z
dc.date.issued 2013 eng
dc.identifier.citation Nietzel, T.; Dudkina, N.V.; Haase, C.; Denolf, P.; Semchonok, D.A. et al.: The native structure and composition of the cruciferin complex in brassica napus. In: Journal of Biological Chemistry 288 (2013), Nr. 4, S. 2238-2245. DOI: https://doi.org/10.1074/jbc.M112.356089 eng
dc.description.abstract Globulins are an important group of seed storage proteins in dicotyledonous plants. They are synthesized during seed development, assembled into very compact protein complexes, and finally stored in protein storage vacuoles (PSVs). Here, we report a proteomic investigation on the native composition and structure of cruciferin, the 12 S globulin of Brassica napus. PSVs were directly purified from mature seeds by differential centrifugations. Upon analyses by blue native (BN) PAGE, two major types of cruciferin complexes of ~ 300-390 kDa and of ~470 kDa are resolved. Analyses by two-dimensional BN/SDS-PAGE revealed that both types of complexes are composed of several copies of the cruciferin α and β polypeptide chains, which are present in various isoforms. Protein analyses by two-dimensional isoelectric focusing (IEF)/SDS-PAGE not only revealed different α and β isoforms but also several further versions of the two polypeptide chains that most likely differ with respect to posttranslational modifications. Overall, more than 30 distinct forms of cruciferin were identified by mass spectrometry. To obtain insights into the structure of the cruciferin holocomplex, a native PSV fraction was analyzed by single particle electron microscopy. More than 20,000 images were collected, classified, and used for the calculation of detailed projection maps of the complex. In contrast to previous reports on globulin structure in other plant species, the cruciferin complex of Brassica napus has an octameric barrel-like structure, which represents a very compact building block optimized for maximal storage of amino acids within minimal space. eng
dc.language.iso eng eng
dc.publisher Bethesda, Md. : ASBMB Publications eng
dc.relation.ispartofseries Journal of Biological Chemistry 288 (2013), Nr. 4 eng
dc.rights CC BY 4.0 Unported eng
dc.rights.uri https://creativecommons.org/licenses/by/4.0/ eng
dc.subject Brassica napus eng
dc.subject Building blockes eng
dc.subject Dicotyledonous plants eng
dc.subject Differential centrifugation eng
dc.subject Isoelectric focusing eng
dc.subject Isoforms eng
dc.subject Native structures eng
dc.subject Plant species eng
dc.subject Polypeptide chain eng
dc.subject Post-translational modifications eng
dc.subject Projection maps eng
dc.subject Protein analysis eng
dc.subject Protein complexes eng
dc.subject Protein storage vacuole eng
dc.subject Seed development eng
dc.subject Seed storage proteins eng
dc.subject Single particle eng
dc.subject Amino acids eng
dc.subject Electron microscopy eng
dc.subject Electrophoresis eng
dc.subject Mass spectrometry eng
dc.subject Proteins eng
dc.subject Seed eng
dc.subject Two dimensional eng
dc.subject Biosynthesis eng
dc.subject cruciferin eng
dc.subject isoprotein eng
dc.subject mitochondrial protein eng
dc.subject unclassified drug eng
dc.subject vegetable protein eng
dc.subject alpha chain eng
dc.subject amino terminal sequence eng
dc.subject Arabidopsis eng
dc.subject article eng
dc.subject beta chain eng
dc.subject carboxy terminal sequence eng
dc.subject complex formation eng
dc.subject controlled study eng
dc.subject electron microscopy eng
dc.subject isoelectric focusing eng
dc.subject mass spectrometry eng
dc.subject molecular weight eng
dc.subject nonhuman eng
dc.subject plant seed eng
dc.subject polyacrylamide gel electrophoresis eng
dc.subject priority journal eng
dc.subject protein analysis eng
dc.subject protein expression eng
dc.subject protein phosphorylation eng
dc.subject protein processing eng
dc.subject rapeseed eng
dc.subject structural proteomics eng
dc.subject structure analysis eng
dc.subject Amino Acids eng
dc.subject Antigens, Plant eng
dc.subject Brassica napus eng
dc.subject Electrophoresis, Polyacrylamide Gel eng
dc.subject Isoelectric Focusing eng
dc.subject Microscopy, Electron eng
dc.subject Peptides eng
dc.subject Plant Physiological Phenomena eng
dc.subject Plant Proteins eng
dc.subject Protein Conformation eng
dc.subject Protein Isoforms eng
dc.subject Protein Structure, Tertiary eng
dc.subject Proteomics eng
dc.subject Seed Storage Proteins eng
dc.subject Seeds eng
dc.subject Vacuoles eng
dc.subject.ddc 570 | Biowissenschaften, Biologie eng
dc.subject.ddc 540 | Chemie eng
dc.title The native structure and composition of the cruciferin complex in brassica napus eng
dc.type Article eng
dc.type Text eng
dc.relation.essn 1083-351X eng
dc.relation.issn 0021-9258 eng
dc.relation.doi https://doi.org/10.1074/jbc.M112.356089 eng
dc.bibliographicCitation.issue 4
dc.bibliographicCitation.volume 288
dc.bibliographicCitation.firstPage 2238
dc.bibliographicCitation.lastPage 2245
dc.description.version publishedVersion eng
tib.accessRights frei zug�nglich eng


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