Title of article
Insights into Antiparallel Microtubule Crosslinking by PRC1, a Conserved Nonmotor Microtubule Binding Protein
Author/Authors
Radhika Subramanian، نويسنده , , Elizabeth M. Wilson-Kubalek، نويسنده , , Christopher P. Arthur and Michael H.B. Stowell، نويسنده , , Matthew J. Bick، نويسنده , , Elizabeth A. Campbell، نويسنده , , Seth A. Darst، نويسنده , , Ronald A. Milligan، نويسنده , , Tarun M. Kapoor، نويسنده ,
Issue Information
هفته نامه با شماره پیاپی سال 2010
Pages
11
From page
433
To page
443
Abstract
Formation of microtubule architectures, required for cell shape maintenance in yeast, directional cell expansion in plants and cytokinesis in eukaryotes, depends on antiparallel microtubule crosslinking by the conserved MAP65 protein family. Here, we combine structural and single molecule fluorescence methods to examine how PRC1, the human MAP65, crosslinks antiparallel microtubules. We find that PRC1ʹs microtubule binding is mediated by a structured domain with a spectrin-fold and an unstructured Lys/Arg-rich domain. These two domains, at each end of a homodimer, are connected by a linkage that is flexible on single microtubules, but forms well-defined crossbridges between antiparallel filaments. Further, we show that PRC1 crosslinks are compliant and do not substantially resist filament sliding by motor proteins in vitro. Together, our data show how MAP65s, by combining structural flexibility and rigidity, tune microtubule associations to establish crosslinks that selectively “mark” antiparallel overlap in dynamic cytoskeletal networks.
Journal title
CELL
Serial Year
2010
Journal title
CELL
Record number
1020380
Link To Document