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Updated: Aug 24, 2026

Functional Complementation Analysis (FCA): A Laboratory Exercise Designed and Implemented to Supplement the Teaching of Biochemical Pathways
Published on: June 24, 2016
A novel mechanism of intragenic complementation between Phe to Ala calmodulin mutations
Hiroyuki Okano1, Masayo Asakawa, Yoshikazu Ohya
1Bio-Mimetic Control Research Center, The Institute of Physical and Chemical Research, RIKEN, 2271-130 Anagahora, Shimoshidami, Moriyama-ku, Nagoya, Aichi 463-0003.
Abstract:
Calmodulin (CaM) performs essential functions in cell proliferation in Saccharomyces cerevisiae. Previously, we isolated fourteen temperature-sensitive Phe-to-Ala mutations of the CaM-encoding gene CMD1. These mutations were classified into four intragenic complementation groups, suggesting that each group represents a loss of CaM interaction with its specific essential target protein. Nuf1p/Spc110p, one of the essential targets, is a spindle pole body component that is required for proper mitosis. We investigated which intragenic complementation group of CaM represents the malfunction of Nuf1p. Immunoprecipitation analysis showed that two cmd1 mutations belonging to two distinct intragenic complementation groups had the most severely impaired complex formation with Nuf1p at the restrictive temperature. The temperature-sensitive growth of these cmd1 mutants was suppressed by a CaM-independent dominant allele of NUF1. Additionally, these mutants displayed characteristic mitotic defects: an increased ratio of artificial chromosome loss, which could be suppressed by the CaM-independent dominant allele of NUF1, and aberrant microtubule structures. These results indicate that these cmd1 mutants display the temperature-sensitive growth due to the compromised interaction with Nuf1p. However, the interaction was restored in a heterozygous diploid of the two cmd1 alleles, suggesting that intragenic complementation between these cmd1 alleles occurs by a novel mechanism, whereby co-presence of both mutant proteins rescues the interaction with Nuf1p.
Insights
Calmodulin (CaM) mutations in yeast disrupt interaction with Nuf1p, affecting mitosis. A novel intragenic complementation mechanism rescues this interaction when both mutant CaM proteins are present.
Area of Science:
- Cell Biology
- Molecular Biology
- Genetics
Background:
- Calmodulin (CaM) is crucial for cell proliferation in Saccharomyces cerevisiae.
- Four intragenic complementation groups of CaM mutations (cmd1) suggest specific target protein interaction losses.
- Nuf1p/Spc110p, a spindle pole body component, is essential for proper mitosis.
Purpose of the Study:
- To identify which CaM mutation group disrupts Nuf1p interaction.
- To investigate the mechanism of CaM-Nuf1p interaction and its role in mitosis.
Main Methods:
- Isolation of fourteen temperature-sensitive CaM (cmd1) mutations.
- Intragenic complementation analysis to group mutations.
- Immunoprecipitation to assess CaM-Nuf1p complex formation.
- Analysis of mitotic defects, including chromosome loss and microtubule structure.
Main Results:
- Two cmd1 mutations from distinct groups severely impaired CaM-Nuf1p complex formation at restrictive temperatures.
- Temperature-sensitive growth defects were suppressed by a CaM-independent NUF1 allele.
- Mutants exhibited increased artificial chromosome loss and aberrant microtubule structures, also suppressed by the NUF1 allele.
- Interaction with Nuf1p was restored in heterozygous diploids, indicating novel intragenic complementation.
Conclusions:
- Specific CaM mutations compromise interaction with Nuf1p, leading to temperature-sensitive growth and mitotic defects.
- A CaM-independent NUF1 allele can suppress these defects.
- Intragenic complementation between specific cmd1 alleles occurs via a novel mechanism involving the co-presence of mutant proteins.
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