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6ZPJ

Crystal structure of the unconventional kinetochore protein Leishmania mexicana KKT4 coiled coil domain

Summary for 6ZPJ
Entry DOI10.2210/pdb6zpj/pdb
DescriptorLeishmania mexicana KKT4, (4S)-2-METHYL-2,4-PENTANEDIOL, IMIDAZOLE, ... (4 entities in total)
Functional Keywordskinetochore, kinetoplastid, microtubules, coiled coil, cell cycle
Biological sourceLeishmania mexicana (strain MHOM/GT/2001/U1103)
Total number of polymer chains2
Total formula weight29207.29
Authors
Ludzia, P.,Lowe, E.D.,Marciano, G.,Mohammed, S.,Redfield, C.,Akiyoshi, B. (deposition date: 2020-07-08, release date: 2020-10-21, Last modification date: 2024-06-19)
Primary citationLudzia, P.,Lowe, E.D.,Marciano, G.,Mohammed, S.,Redfield, C.,Akiyoshi, B.
Structural characterization of KKT4, an unconventional microtubule-binding kinetochore protein.
Structure, 29:1014-1028.e8, 2021
Cited by
PubMed Abstract: The kinetochore is the macromolecular machinery that drives chromosome segregation by interacting with spindle microtubules. Kinetoplastids (such as Trypanosoma brucei), a group of evolutionarily divergent eukaryotes, have a unique set of kinetochore proteins that lack any significant homology to canonical kinetochore components. To date, KKT4 is the only kinetoplastid kinetochore protein that is known to bind microtubules. Here we use X-ray crystallography, NMR spectroscopy, and crosslinking mass spectrometry to characterize the structure and dynamics of KKT4. We show that its microtubule-binding domain consists of a coiled-coil structure followed by a positively charged disordered tail. The structure of the C-terminal BRCT domain of KKT4 reveals that it is likely a phosphorylation-dependent protein-protein interaction domain. The BRCT domain interacts with the N-terminal region of the KKT4 microtubule-binding domain and with a phosphopeptide derived from KKT8. Taken together, these results provide structural insights into the unconventional kinetoplastid kinetochore protein KKT4.
PubMed: 33915106
DOI: 10.1016/j.str.2021.04.004
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (1.9 Å)
Structure validation

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