MLL5 maintains spindle bipolarity by preventing aberrant cytosolic aggregation of PLK1
نویسندگان
چکیده
Faithful chromosome segregation with bipolar spindle formation is critical for the maintenance of genomic stability. Perturbation of this process often leads to severe mitotic failure, contributing to tumorigenesis. MLL5 has been demonstrated to play vital roles in cell cycle progression and the maintenance of genomic stability. Here, we identify a novel interaction between MLL5 and PLK1 in the cytosol that is crucial for sustaining spindle bipolarity during mitosis. Knockdown of MLL5 caused aberrant PLK1 aggregation that led to acentrosomal microtubule-organizing center (aMTOC) formation and subsequent spindle multipolarity. Further molecular studies revealed that the polo-box domain (PBD) of PLK1 interacted with a binding motif on MLL5 (Thr887-Ser888-Thr889), and this interaction was essential for spindle bipolarity. Overexpression of wild-type MLL5 was able to rescue PLK1 mislocalization and aMTOC formation in MLL5-KD cells, whereas MLL5 mutants incapable of interacting with the PBD failed to do so. We thus propose that MLL5 preserves spindle bipolarity through maintaining cytosolic PLK1 in a nonaggregated form.
منابع مشابه
MLL5 limits PLK1 aggregation
< a d d a r t t y p e = " r e l " d o i = " 1 0. 1 0 8 3 / j c b. 2 0 1 5 0 1 0 2 1 " > Zhao et al.< / a d d a r t > reveal that the prospective tumor suppressor MLL5 helps mitotic cells maintain a bipolar spindle by preventing the kinase PLK1 from aggregating in the cytosol. MLL5, whose gene is often deleted in patients with acute myeloid leukemia, localizes to nuclear speckles and regulates c...
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