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.

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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