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Updated: May 23, 2026

Use of Time-Lapse Microscopy and Stage-Specific Nuclear Depletion of Proteins to Study Meiosis in S. cerevisiae
Published on: October 11, 2022
Scm3 interacts with the N-terminal tail of Cse4 to regulate kinetochore assembly in budding yeast
Prakhar Agarwal1, Anushka Alekar1, Shubhomita Mallick1
1Department of Biosciences and Bioengineering, Indian Institute of Technology, Bombay, Powai, Mumbai, Maharashtra 400076, India.
Abstract:
The kinetochore is a multiprotein complex formed at the centromeres and is essential for the faithful chromosome segregation. In most of the organisms, the kinetochore is assembled on a specialized centromeric nucleosome where histone H3 is replaced by a variant, named CENP-A. In budding yeast, Cse4 (CENP-A in humans) is recruited to the centromeric nucleosome through an interaction between its C-terminal domain and a specific chaperone, Scm3 (HJURP in humans). Interestingly, following Cse4 recruitment during S phase, Scm3 persists and is dynamically exchanged at the centromeres during other stages of the cell cycle. Recent in vitro studies have reported that Scm3 also interacts with N-terminal of Cse4 (N-Cse4), which in turn facilitates a better interaction of Ame1-Okp1 (AO) of COMA subcomplex with N-Cse4, which promotes kinetochore assembly. In this work, using genetic and biochemical assays, we provide in vivo evidence of the interaction between Scm3 and N-Cse4. Additionally, by artificially tethering Scm3, we show that its association has the potential to stabilize a missegregating chromosome with an inactive centromere. We propose that at the centromeres, Scm3 has 2 functions in tandem-Cse4 deposition and stabilization of N-Cse4, which together culminate in proper kinetochore assembly. This work has clinical significance as both CENP-A and HJURP are upregulated under disease states, which can predispose the cells to aneuploidy, a hallmark of cancer cells.
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