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Batram, C.

Publications and source records attributed to Batram, C..

2 recordsLinked to original sources

The dual role of the 16mer motif within the 3' untranslated region of the variant surface glycoprotein of Trypanosoma brucei

The variant surface glycoprotein (VSG) of African trypanosomes is essential for survival of bloodstream form parasites. These parasites undergo antigenic variation, an immune evasion strategy in which they periodically switch VSG expression from one isoform to another. The molecular processes central to the expression and regulation of the VSG are however not fully understood. In general, the regulation of gene expression in trypanosomes is largely post-transcriptional. Regulatory sequences, mostly present in the 3 UTRs, often serve as key elements in the modulation of the levels of individual mRNAs. In T. brucei VSG genes, a 16mer motif within the 3 UTR has been shown to be essential for the stability of VSG transcripts and abundant VSG expression. This motif is 100 % conserved in the 3 UTRs of all transcribed and non-transcribed VSG genes. As a stability-associated sequence element, the absence of nucleotide substitutions in the 16mer is however exceptional. We therefore hypothesised that the motif is involved in other essential roles/processes besides stability of the VSG transcripts. In this study, we demonstrate that the 100 % conservation of the 16mer motif is not essential for cell viability or for the maintenance of functional VSG protein levels. We further show that the intact motif in the active VSG 3 UTR is neither required to promote VSG silencing during switching nor is it needed during differentiation from bloodstream forms to procyclic forms. Ectopic overexpression of a second VSG, however, requires the intact 16mer motif within the ectopic VSG 3 UTR to trigger silencing and exchange of the active VSG, suggesting a role for the motif in transcriptional VSG switching. The enigmatic 16mer motif therefore appears to play a dual role in transcriptional VSG switching and VSG transcript stability.

cell biology↗

Endoplasmic reticulum-targeting but not translation is required for mRNA balancing in trypanosomes

The cell surface of bloodstream form African trypanosomes is covered by a dense coat of immunogenic variant surface glycoproteins (VSGs). By continuously changing the expressed VSG antigen, the parasites can survive the hosts immune response. The VSG is highly expressed in Trypanosoma brucei, accounting for approximately 10 - 20% of total mRNA. Depletion of VSG mRNA is lethal, and a counterbalancing of the mRNA levels occurs when two or more VSGs are simultaneously expressed. How the VSG expression levels are regulated is unknown. Here, by using inducible and constitutive systems for ectopic VSG expression, we have discovered that (i) the endogenous VSG mRNA level is downregulated only when the ectopic VSG is targeted to the ER, (ii) VSG translation is dispensable and in fact, (iii) the regulation of VSG mRNA levels does not depend on a VSG open reading frame. We propose that feedback elicited at the ER regulates the VSG mRNA amounts to avoid overshooting the secretory pathway capacity. In this way, VSG expression is quantitatively and qualitatively fine-tuned. Balancing the overall number of ER-targeted mRNAs could well be a general mechanism in cell biology. The trypanosome system with just one dominant mRNA species provides a versatile model for studying this phenomenon.

microbiology↗