Light-induced spindle assembly through Aurora A clustering

Animal cells assemble gigadalton-scale molecular complexes composed of ~200 proteins to build a functional centrosome during mitosis, ensuring faithful chromosome segregation. Although the molecular principles underlying centrosome assembly have been extensively studied, the minimal components required to reconstitute centrosome-like activity in living cells remain unknown. Here, we develop an optogenetic strategy that exploits Aurora A kinase clustering to assemble functional centrosome-like structures in human cells. Remarkably, these light-induced assemblies activate Aurora A, nucleate microtubules, and bypass the requirement for the canonical Aurora A scaffold Cep192. Mechanistically, we identify the evolutionarily conserved Aurora A partner TPX2 as an essential factor for Aurora A cluster-dependent microtubule nucleation. Furthermore, optogenetic Aurora A clustering significantly rescues spindle assembly defects associated with centrosome ablation. We term this approach Light-Induced Spindle Assembly (LISA). By directly coupling Aurora A activity to spatial clustering, LISA defines a minimal and tunable module capable of driving spindle assembly. More broadly, LISA provides a synthetic biology platform for dissecting the fundamental principles of Aurora A-dependent spindle assembly, a prominent feature of mitotic and meiotic spindle formation.

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Publication Details

Journal
EMBO Reports
Published
2026-09-15
DOI
https://doi.org/10.1038/s44319-026-00928-9
Primary Topic
Microtubule and mitosis dynamics
Type
article
Field-Weighted Citation Impact
0.00

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article

Light-induced spindle assembly through Aurora A clustering

Sachin Kotak, Madhumitha Balakrishnan, Vignesh Olakkal
EMBO Reports
Microtubule and mitosis dynamics
article

Light-induced spindle assembly through Aurora A clustering

Sachin Kotak, Madhumitha Balakrishnan, Vignesh Olakkal
article en

Abstract

Animal cells assemble gigadalton-scale molecular complexes composed of ~200 proteins to build a functional centrosome during mitosis, ensuring faithful chromosome segregation. Although the molecular principles underlying centrosome assembly have been extensively studied, the minimal components required to reconstitute centrosome-like activity in living cells remain unknown. Here, we develop an optogenetic strategy that exploits Aurora A kinase clustering to assemble functional centrosome-like structures in human cells. Remarkably, these light-induced assemblies activate Aurora A, nucleate microtubules, and bypass the requirement for the canonical Aurora A scaffold Cep192. Mechanistically, we identify the evolutionarily conserved Aurora A partner TPX2 as an essential factor for Aurora A cluster-dependent microtubule nucleation. Furthermore, optogenetic Aurora A clustering significantly rescues spindle assembly defects associated with centrosome ablation. We term this approach Light-Induced Spindle Assembly (LISA). By directly coupling Aurora A activity to spatial clustering, LISA defines a minimal and tunable module capable of driving spindle assembly. More broadly, LISA provides a synthetic biology platform for dissecting the fundamental principles of Aurora A-dependent spindle assembly, a prominent feature of mitotic and meiotic spindle formation.

EMBO Reports
Indian Institute of Science Bangalore (IN)
Department of Science and Technology, Ministry of Science and Technology, India, Indo-French Centre for the Promotion of Advanced Research
Openalex Percentile: Top 15%
Microtubule and mitosis dynamics
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Light-induced spindle assembly through Aurora A clustering — Sachin Kotak, Madhumitha Balakrishnan, et al. · EMBO Reports (2026) | TGRS Research Map | TGRS