| 2011 |
CENP-C directly binds M18BP1 through conserved domains in CENP-C, and depletion of CENP-C prevents M18BP1 targeting to metaphase centromeres and inhibits CENP-A chromatin assembly, establishing CENP-C as the recruitment factor linking existing CENP-A chromatin to new CENP-A nucleosome assembly machinery. |
Co-immunoprecipitation, depletion (RNAi/knockdown) with centromere localization and CENP-A assembly readouts, direct binding assays |
The Journal of cell biology |
High |
21911481
|
| 2012 |
M18BP1 interacts with CENP-C in mouse embryonic stem cells; the interaction domain in M18BP1 maps to a central region containing the conserved SANT domain, and in CENP-C to its C-terminus. Knockdown of CENP-C reduces M18BP1 association and CENP-A levels at centromeres. |
Interaction screen against 16 core centromeric proteins, domain mapping by Co-IP/pulldown, CENP-C knockdown with centromere localization readout |
Nucleus (Austin, Tex.) |
High |
22540025
|
| 2017 |
A Mis18α:Mis18β 4:2 hexamer (formed by Yippee domains) binds two copies of M18BP1 through M18BP1's 140 N-terminal residues. CDK1 phosphorylation at two conserved sites in this region destabilizes binding to Mis18α:Mis18β, limiting complex formation to G1. CDK1 therefore controls Mis18 complex recruitment to centromeres by regulating M18BP1 oligomerization on the Mis18α:Mis18β scaffold. |
Biochemical reconstitution, in vitro CDK1 phosphorylation assay, phosphomutant analysis, viral 2A co-expression strategy, cell-based centromere localization assay |
eLife |
High |
28059702
|
| 2017 |
Xenopus M18BP1 directly and cell-cycle-dependently binds CENP-A nucleosomes using a conserved motif (resembling the CENP-C nucleosome-binding motif) to recruit the Mis18 complex to interphase centromeres and promote new CENP-A assembly. CENP-C competes with M18BP1 for CENP-A nucleosome binding at centromeres. |
Xenopus egg extract CENP-A assembly assay, direct nucleosome binding assay, competition assay between M18BP1 and CENP-C, motif mutagenesis |
Developmental cell |
High |
28743005
|
| 2019 |
Xenopus M18BP1 localizes to centromeres during metaphase by binding CENP-C through its conserved SANTA domain, and CDK phosphorylation of M18BP1 is required for this metaphase M18BP1/CENP-C interaction. Mutations disrupting this interaction also cause defective nuclear localization of M18BP1 in interphase and impair CENP-A nucleosome assembly. |
Xenopus egg extract and cell-based assays, phosphomutant analysis, domain-deletion analysis, centromere localization and CENP-A assembly readouts |
The EMBO journal |
High |
30606714
|
| 2023 |
In metaphase, M18BP1 (M18BP1.S subunit) binds CENP-C and thereby competitively inhibits HJURP access to centromeres, preventing premature CENP-A assembly; removal of both this inhibitory activity and HJURP phosphorylation is required to allow CENP-A assembly. |
Xenopus cell-free centromere assembly assay, competitive binding analysis, phosphomutant HJURP rescue experiments |
The Journal of cell biology |
High |
37141119
|
| 2021 |
The extended N-terminal tail of C. elegans CENP-A directly binds KNL-2 (M18BP1 ortholog); this interaction is essential for CENP-A loading at centromeres and partially substitutes for the absent Scm3/HJURP chaperone in nematodes. Removal of the structured N-tail region prevents CENP-A loading, kinetochore assembly, and causes defective chromosome condensation. |
Direct binding assay (pulldown), N-tail deletion/mutation analysis, RNAi-based functional assays in C. elegans, kinetochore assembly and chromosome condensation readouts |
Molecular biology of the cell |
High |
33852350
|
| 2021 |
CDK-1 phosphorylates C. elegans KNL-2 in vitro; mutation of three C-terminal CDK-1 phosphorylation sites causes chromosome condensation defects and reduced mitotic levels of condensin II on chromosomes, without affecting CENP-A loading or kinetochore localization, thereby separating the KNL-2 functions in CENP-A loading and chromosome condensation. |
In vitro CDK-1 phosphorylation assay, phosphodeficient mutant worm strains, condensin II and CENP-A localization assays, embryonic lethality quantification |
Journal of cell science |
High |
34734636
|
| 2025 |
M18BP1 directly binds the CAP-G2 subunit of condensin II and is required for condensin II localization to chromatin at mitotic entry. The condensin II antagonist MCPH1 also binds CAP-G2 and outcompetes M18BP1 during interphase; a switch from MCPH1 to M18BP1 at mitotic onset activates condensin II for chromosome condensation. |
Genetic and proteomic approaches, direct binding assay (M18BP1–CAP-G2 interaction), competitive binding assay (MCPH1 vs M18BP1 for CAP-G2), condensin II chromatin localization and chromosome condensation readouts |
Molecular cell |
High |
40614722
|
| 2024 |
In C. elegans oocytes, KNL-2 (M18BP1 ortholog) recruits the nucleoporin MEL-28/ELYS at meiotic kinetochores through a specific N-terminal domain, independently of its canonical CENP-A loading factor activity. KNL-2 and MEL-28/ELYS are interdependent for kinetochore localization and together support outer kinetochore assembly in meiosis I in parallel to the canonical CENP-A/CENP-C pathway. |
RNAi and Degron-based depletion, engineered N-terminal domain mutants, kinetochore localization assays in C. elegans oocytes, co-depletion epistasis |
Current biology : CB |
Medium |
39353426
|
| 2024 |
In chicken DT40 cells, tethering of CENP-C or CENP-I induces CENP-A incorporation at a non-centromeric locus in the absence of Knl2/MIS18BP1, and CENP-C co-immunoprecipitates with HJURP independently of Knl2, indicating that CENP-C can recruit CENP-A via HJURP binding without requiring Knl2. |
Artificial tethering assay, auxin-inducible degron (AID)-based knockout, Co-immunoprecipitation in DT40 cells |
Journal of cell science |
Medium |
38319136
|
| 2026 |
Artificial M18BP1 dimerization in human cells bypasses the need for MIS18α/β, allowing identification of at least four determinants of M18BP1 centromere localization: the SANTA domain (whose first crystal structure was reported) plus linear motifs in disordered neighboring regions that interact with the 16-subunit CCAN. Cell-cycle-dependent dimerization of M18BP1 on MIS18α/β promotes recognition of multivalent centromeric CENP-A assemblies followed by PLK1 and HJURP cooption and new CENP-A deposition. |
Artificial dimerization constructs in human cells, SANTA domain crystal structure, interaction footprint mapping on CCAN, centromere localization and CENP-A deposition assays |
The EMBO journal |
High |
41629527
|
| 2026 |
Phosphorylation of Xenopus M18BP1 (by cell-cycle kinases) in metaphase disrupts its binding to CENP-A nucleosomes; relief of this phosphorylation in interphase enables M18BP1 binding to CENP-A nucleosomes and CENP-A nucleosome assembly, defining a phosphoregulatory switch that restricts new CENP-A assembly to interphase. |
Xenopus egg extract CENP-A assembly assay, phosphomutant analysis of M18BP1, direct CENP-A nucleosome binding assay |
EMBO reports |
High |
41680291
|