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February 5, 2026Proceedings of the National Academy of Sciences0 citationsOpen Access

A factor integrating transcription and repression of surface antigen genes in African trypanosomes

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MBMaría Agustina BerazateguiIGIone GoodwinLLLianne I. M. Lansink

Key Points

  • The aim is to understand how transcription and repression of surface antigen genes are integrated in Trypanosoma brucei.
  • Identified ESBX protein using RNA interference (RNAi) knockdown and overexpression techniques.
  • Analyzed localization of RNA Pol I at the expression site body (ESB).
  • Investigated transcriptomic changes following ESBX manipulation.
  • ESBX knockdown reduces RNA Pol I localization and active BES transcription.
  • Inactivation of BESs occurs with low transcript levels following ESBX knockdown.
  • Overexpression of ESBX activates inactive BESs differently than knockdown, promoting processive transcription.

Abstract

Antigenic variation in Trypanosoma brucei ( T. brucei ) requires monoallelic expression of one variant surface glycoprotein (VSG) from one of the subtelomeric bloodstream form (BSF) expression sites (BESs). This transcription is unusually mediated by RNA polymerase I (RNA Pol I) and occurs in a specialized nuclear body, the expression site body (ESB). While factors promoting active BES transcription and silencing inactive BESs are known, how these opposing activities are integrated remains unknown. Here, we identify ESBX (Tb927.3.1660) as a BSF-specific ESB protein necessary for this coordination. We show that ESBX RNAi knockdown prevents RNA Pol I localizing to the ESB and reduces active BES transcription, while also derepressing inactive BESs with low processivity transcription. Conversely, ESBX overexpression weakly activates inactive BESs in a distinct manner from ESBX knockdown, leading to processive transcription, without disrupting the active BES or forming supernumerary ESBs. ESBX knockdown causes a similar transcriptomic defect to ESB1 and VEX2 knockdown combined, establishing ESBX as a key factor linking transcriptional activation of the active BES with inactive BES silencing through the VSG exclusion (VEX) phenomenon. This allows us to suggest models for understanding the establishment and maintenance of monoallelic expression critical for parasite immune evasion.

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Cite This Study

Berazategui et al. (2026) studied this question.

synapsesocial.com/papers/69843564f1d9ada3c1fb424ahttps://doi.org/10.1073/pnas.2531377123
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