International journal of molecular sciences

Optineurin influences normal and immune-stimulated gene activity in microglia cells

Updated

Abstract

Essence

Optineurin appears to help maintain baseline antiviral readiness and mount a full transcriptional response to inflammatory stimulation.

Evidence

Bulk RNA sequencing of CRISPR-Cas9 optineurin-knockout versus wild-type BV2 microglia found about 7% of genes changed at baseline, and after about 35% of genes changed in wild-type cells versus about 16% in knockout cells, with weaker inflammatory induction and persistent cell-cycle transcripts in the knockout.

Caveat

The findings come from transcriptomics in an immortalized BV2 microglial cell line, not primary microglia or an in vivo neurodegeneration model.

Simplified

Key numbers

~7%
Altered Transcriptome Percentage at Baseline
Percentage of the transcriptome altered in optineurin knockout BV2 cells compared to wild-type.
~16%
Differentially Expressed Genes in Response
Percentage of genes differentially expressed in -treated optineurin knockout cells compared to their baseline.
~35%
Differentially Expressed Genes in Wild-Type Response
Percentage of genes affected in wild-type BV2 cells upon stimulation.

Full Text

What this is

  • This research investigates the role of optineurin in BV2 , focusing on its impact on gene expression under normal and inflammatory conditions.
  • Optineurin is linked to neurodegenerative diseases, making its function in particularly relevant.
  • Using CRISPR-Cas9 technology, the study compares transcriptomic profiles between optineurin knockout and wild-type .
  • Findings reveal that optineurin is crucial for maintaining immune readiness and regulating inflammatory responses.

Essence

  • Optineurin loss alters microglial gene expression, compromising immune responses and cell cycle regulation during inflammation. Under basal conditions, it affects ~7% of the transcriptome, while stimulation reduces the response in knockout cells to ~16%.

Key takeaways

  • Optineurin knockout alters ~7% of the BV2 microglial transcriptome at baseline, primarily downregulating immune-related genes. This suggests a targeted role in maintaining immune readiness.
  • stimulation induces a broad transcriptional response in wild-type , affecting ~35% of genes. In optineurin knockout cells, this response is blunted, with only ~16% of genes differentially expressed.
  • Optineurin deficiency leads to distinct transcriptional programs during inflammation, with a notable retention of cell cycle-related genes, indicating a failure to transition to an immune-activated state.

Caveats

  • The study relies on the BV2 microglial cell line, which may not fully represent primary microglial behavior. This could limit the generalizability of the findings.
  • Transcript-level changes do not always correlate with protein expression, necessitating further validation of the functional implications of the observed gene expression alterations.

Definitions

  • microglia: The resident immune cells of the central nervous system, essential for maintaining neural homeostasis and responding to injury or infection.
  • LPS: Lipopolysaccharide, a component of bacterial cell walls used to induce inflammation in experimental models.

Simplified

Funding

Competing interests

T.K., K.S., and G.A. are employees of Metisox—Cell Networks GmbH. Metisox develops and maintains SysWiz (used for pathway schematics); T.K., K.S., and G.A. contributed to the design and interpretation of the literature-mining component (Section 2.6). The remaining authors declare no conflicts of interest.
PubMed

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