Title of article
Molecular and Biophysical Characterization of Assembly-Starter Units of Human Vimentin
Author/Authors
Norbert Mücke، نويسنده , , Tatjana Wedig، نويسنده , , Andrea Bürer، نويسنده , , Lyuben N. Marekov، نويسنده , , Peter M. Steinert، نويسنده , , J?rg Langowski، نويسنده , , Ueli Aebi، نويسنده , , Harald Herrmann، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2004
Pages
18
From page
97
To page
114
Abstract
We have developed an assembly protocol for the intermediate filament (IF) protein vimentin based on a phosphate buffer system, which enables the dynamic formation of authentic IFs. The advantage of this physiological buffer is that analysis of the subunit interactions by chemical cross-linking of internal lysine residues becomes feasible. By this system, we have analyzed the potential interactions of the coiled-coil rod domains with one another, which are assumed to make a crucial contribution to IF formation and stability. We show that headless vimentin, which dimerizes under low salt conditions, associates into tetramers of the A22-type configuration under assembly conditions, indicating that one of the effects of increasing the ionic strength is to favor coil 2–coil 2 interactions. Furthermore, in order to obtain insight into the molecular interactions that occur during the first phase of assembly of full-length vimentin, we employed a temperature-sensitive variant of human vimentin, which is arrested at the “unit-length filament” (ULF) state at room temperature, but starts to elongate upon raising the temperature to 37 °C. Most importantly, we demonstrate by cross-linking analysis that ULF formation predominantly involves A11-type dimer–dimer interactions. The presence of A22 and A12 cross-linking products in mature IFs, however, indicates that major rearrangements do occur during the longitudinal annealing and radial compaction steps of IF assembly.
Keywords
vimentin , Analytical ultracentrifugation , Assembly , chemical cross-linking , intermediate filament
Journal title
Journal of Molecular Biology
Serial Year
2004
Journal title
Journal of Molecular Biology
Record number
1243708
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