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February 8, 2026Biomolecules1 citationsOpen Access

Distinct Domains Contribute to the Subcellular Localization of Human cGAS in Yeast

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SLSara López-MontesinoJCJulia María Coronas-SernaHMHumberto Martín

Key Points

  • This research aims to investigate the specific regions of cGAS that influence its localization within cells, particularly in yeast.
  • Used heterologous expression of cGAS in Saccharomyces cerevisiae.
  • Analyzed cGAS-eGFP localization using fluorescent microscopy.
  • Examined the impact of N-terminal and C-terminal domain deletions on localization.
  • Assessed effects of mutations in the DNA-binding Zn-thumb motif.
  • cGAS-eGFP predominantly localized in cytoplasmic aggregates and ER-Mitochondria encounter structures.
  • Deletion of the N-terminus increased nuclear localization and decreased cytoplasmic aggregates.
  • Mutant cGAS with a defective Zn-thumb showed increased nuclear presence.
  • Both N-terminal and C-terminal domains regulate cGAS localization in the cell.

Abstract

Cyclic GMP-AMP synthase (cGAS) functions as a DNA sensor in the cytoplasm, triggering immune responses, but it is also translocated to the nucleus, where it is kept catalytically inactive. It consists of an unstructured N-terminal domain of around 160 amino acids, and a larger C-terminal fold comprising the catalytic and DNA-binding domains. Subcellular localization of cGAS is thought to play a key role in its regulation. Here, we make use of heterologous expression in the eukaryotic model Saccharomyces cerevisiae to study cGAS localization in a neutral cellular environment. cGAS-eGFP was mostly found in aggregates at the endoplasmic reticulum–mitochondria encounter structure (ERMES) and juxtanuclear protein quality compartments (JUNQs), although some cells displayed an association between cGAS-eGFP and the plasma membrane. The N-terminus of cGAS fused to eGFP was unable to associate with the plasma membrane by itself, but its deletion dramatically promoted nuclear localization of cGAS-eGFP and decreased cytoplasmic aggregates. A mutant in the DNA-binding Zn-thumb motif of cGAS also showed a more prominent nuclear localization. Thus, both the N-terminal and C-terminal domains of cGAS seem to cooperate to prevent nuclear localization and to maintain cytoplasmic reservoirs of the protein. Heterologous cGAS expression in yeast is a valuable tool for modeling aspects of its subcellular localization and aggregative features.

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Cite This Study

López-Montesino et al. (2026) studied this question.

synapsesocial.com/papers/698827670fc35cd7a88461bfhttps://doi.org/10.3390/biom16020259
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