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February 9, 2026Journal of Biological Chemistry0 citationsOpen Access

Histone fold domain positioning dictates cotranslational heterodimeric assembly of paralogous TAF12/TAF12L in Candida albicans

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VBVidhi BhardwajSSSelene K. SwansonLFLaurence Florens

Key Points

  • This work aims to investigate how the histone fold domain's position affects heterodimeric assembly of TAF12 and TAF12L in Candida albicans.
  • Used affinity purification-coupled mass spectrometry to identify TFIID and SAGA complex components.
  • Examined interactions of nascent TAF4 and Ada1 proteins with TAF12 and TAF12L through RNA immunoprecipitation.
  • Analyzed steady-state levels and mutual dependence of TAF12-TAF4 and TAF12L-Ada1 pairs.
  • Identified high-confidence components of TFIID and SAGA complexes in C. albicans.
  • Demonstrated mutual dependence of TAF12-TAF4 and TAF12L-Ada1 steady-state levels.
  • Revealed that histone fold domain positioning is critical for cotranslational assembly directionality.

Abstract

The fidelity of assembly of multiprotein complexes is essential for the formation of stable and functional protein complexes that are critical for cell growth and survival. In this context, TBP-associated factor (TAF) subunits maintain tight specificity for their integration into TFIID and SAGA complexes. In this work, using affinity purification-coupled mass spectrometry of epitope-tagged TFIID subunits TBP and TAF11, and the SAGA subunit TAF12L we identified components of the C. albicans TFIID and SAGA complexes. Whereas TAF12 is a subunit of TFIID, the paralogous TAF12L is a subunit of the SAGA complex, and we further identified each of the TFIID and SAGA complex subunits with high confidence. We found that the steady-state levels of the histone fold domain containing pairs, TAF12-TAF4 and TAF12L-Ada1 proteins, are mutually dependent on the stable expression of each other. Using RNA immunoprecipitation from polysome-containing extracts, we found that nascent TAF4 and Ada1 proteins interact with TAF12 and TAF12L, respectively, by a cotranslational mechanism in an ordered, sequential mode of assembly. Our results further revealed that the intrinsic position of the histone fold domain within the protein sequence is crucial for determining the sequence and directionality of cotranslational assembly, ensuring both selectivity and stability of the histone fold domain containing heterodimeric proteins in the fungal pathogen C. albicans.

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Cite This Study

Bhardwaj et al. (2026) studied this question.

synapsesocial.com/papers/698978dff0ec2af6756e7132https://doi.org/10.1016/j.jbc.2026.111239
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