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Biology subjects

Tikanova, P.

Publications and source records attributed to Tikanova, P..

2 recordsLinked to original sources

A regulatory module driving the recurrent evolution of irreducible molecular complexes.

To sustain life, molecular complexes require the concerted action of multiple proteins, each relying on one another to perform intricate tasks. However, how such interdependent protein interactions evolve in the first place is poorly understood. To address this, we investigated the origins of a group of fast-evolving genetic parasites--toxin-antidote elements--which boil down this dilemma to a simple question: what came first, the toxin or the antidote? By integrating quantitative genetics, biochemistry, and evolutionary genomics, we discovered that toxins and antidotes can arise simultaneously through the duplication of a regulatory module comprising an F-box protein in linkage to its substrate. Our findings provide one solution to the recurrent emergence of mutual dependence in protein complexes and illustrate in detail how complexity can swiftly arise from simplicity.

genomics↗

The evolution of an RNA-based memory of self in the face of genomic conflict

Distinguishing endogenous genes from selfish ones is essential for germline integrity. In animals, small regulatory RNAs play a central role in this process; however, the underlying principles are largely unknown. To fill this gap, we studied how selfish toxin-antidote elements (TAs) evade silencing in the nematode Caenorhabditis tropicalis. We found that the slow-1/grow-1 TA is active only when maternally inherited. Surprisingly, this parent-of-origin effect stems from a regulatory role of the toxins mRNA: maternal slow-1 mRNA--but not SLOW-1 protein--licenses slow-1 expression in the zygote by counteracting piRNAs. Our results indicate that epigenetic licensing-- known to play a role in C. elegans sex-determination--is likely a common mechanism that hinders the spread of selfish genes in wild populations while ensuring a lasting memory of self in the germline.

genetics↗