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Developmental and light‐dependent changes of the cytosolic chaperonin containing TCP‐1 (CCT) subunits in maize seedlings, and the localization in coleoptiles
Author(s) -
Himmelspach Regina,
Nick Peter,
Schäfer Eberhard,
Ehmann Bruno
Publication year - 1997
Publication title -
the plant journal
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.058
H-Index - 269
eISSN - 1365-313X
pISSN - 0960-7412
DOI - 10.1046/j.1365-313x.1997.12061299.x
Subject(s) - coleoptile , cytoskeleton , biology , cytosol , etiolation , protein subunit , actin , tubulin , biochemistry , microbiology and biotechnology , microtubule , biophysics , enzyme , cell , gene
The cytosolic chaperonin containing TCP‐1 (CCT) is known to keep fold cytoskeletal proteins and is involved in the proper organization of the cytoskeleton. These studies are based on the assumption that growth responses linked to structural rearrangement of the plant cytoskeleton include the action of CCT and the need for newly synthesized tubulin. The presence of the α‐ and ɛ‐ subunits of CCT was investigated in soluble fractions of protein extracts from maize mesocotyls and coleoptiles at distinct growth stages. The CCT‐subunits, tubulins and actin decreased in the coleoptile in response to far‐red light. In addition, independent from light treatment, the amount of CCTɛ abundance declined with age in coleoptiles and mesocotyls between 2 and 4.5 days after sowing. In contrast to CCTɛ, no significant light regulation of CCTα was found in the mesocotyl. In two day old, light‐grown rapidly elongating coleoptiles part of the CCTα subunit and the bulk of actin and tubulin was found shifted into fractions of high molecular weight complexes when compared to slowly elongating, dark grown coleoptiles. In 4.5 day old, etiolated and elongating coleoptiles, part of both CCT‐subunits and cytoskeleton proteins were found in fractions of high molecular weight. A complete disappearance of these polypeptides was observed in old far‐red irradiated growth‐arrested coleoptiles. CCTɛ was found to be co‐localized to microtubular structures and to the nucleus. We conclude from our data that abundance of CCT‐subunits in soluble extracts is dependent on age and light treatment, but independent from the growth stage of mesocotyl and coleoptile.