Related Experiment Video
Updated: Jun 16, 2025

Deciphering the Molecular Mechanism and Function of Pore-Forming Toxins Using Leishmania major
Published on: October 28, 2022
Transcriptome and proteome changes triggered by overexpression of the transcriptional regulator Maf1 in the human
Luis A Rivera-Rivas1, Luis E Florencio-Martínez1, Gabriela Romero-Meza2
1Unidad de Biomedicina, Facultad de Estudios Superiores Iztacala, Universidad Nacional Autónoma de México, Tlalnepantla, Mexico.
Abstract:
Maf1, originally described as a repressor of RNA polymerase III (RNAP III) transcription in yeast, participates in multiple functions across eukaryotes. However, the knowledge about Maf1 in protozoan parasites is scarce. To initiate the study of Maf1 in Leishmania major, we generated a cell line that overexpresses this protein. Overexpression of Maf1 led to a significant reduction in the abundance of tRNAs, 5S rRNA, and U4 snRNA, demonstrating that Maf1 regulates RNAP III activity in L. major. To further explore the roles played by Maf1 in this microorganism, global transcriptomic and proteomic changes due to Maf1 overexpression were determined using RNA-sequencing and label-free quantitative mass spectrometry. Compared to wild-type cells, differential expression was observed for 1082 transcripts (615 down-regulated and 467 up-regulated) and 205 proteins (132 down-regulated and 73 up-regulated) in the overexpressing cells. A correlation of 44% was found between transcriptomic and proteomic results. Gene ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) enrichment analyses revealed that the differentially expressed genes and proteins are mainly involved in transcription, cell cycle regulation, lipid metabolism and transport, ribosomal biogenesis, carbohydrate metabolism, autophagy, and cytoskeleton modification. Thus, our results suggest the involvement of Maf1 in the regulation of all these processes in L. major, as reported in other species, indicating that the functions performed by Maf1 were established early in eukaryotic evolution. Notably, our data also suggest the participation of L. major Maf1 in mRNA post-transcriptional control, a role that, to the best of our knowledge, has not been described in other organisms.
Insights
Maf1 protein represses RNA polymerase III transcription in Leishmania major, impacting tRNA, rRNA, and snRNA levels. Overexpression revealed Maf1
Area of Science:
- Molecular Biology
- Parasitology
- Genomics
Background:
- Maf1 protein is a known repressor of RNA polymerase III (RNAP III) transcription in yeast.
- Its functions across eukaryotes are diverse, but knowledge in protozoan parasites like Leishmania major is limited.
Purpose of the Study:
- To investigate the role of Maf1 in Leishmania major.
- To characterize the effects of Maf1 overexpression on RNAP III activity and global gene expression.
Main Methods:
- Generation of a Leishmania major cell line overexpressing Maf1.
- RNA-sequencing for transcriptomic analysis.
- Label-free quantitative mass spectrometry for proteomic analysis.
- Gene Ontology and KEGG pathway enrichment analyses.
Main Results:
- Maf1 overexpression significantly reduced tRNA, 5S rRNA, and U4 snRNA abundance, confirming RNAP III regulation.
- Global analysis identified 1082 differentially expressed transcripts and 205 differentially expressed proteins.
- Enrichment analyses linked Maf1 to transcription, cell cycle, metabolism, autophagy, and cytoskeleton regulation.
Conclusions:
- Maf1 plays a conserved regulatory role in Leishmania major, affecting transcription, metabolism, and cell cycle processes.
- The study suggests Maf1's involvement in mRNA post-transcriptional control, a novel function not previously described in other organisms.
Related Concept Videos
Ribosome Profiling
Applications of ribosome profiling
Ribosome profiling has many applications, including in vivo monitoring of translation inside a particular organ or tissue type and quantifying new protein synthesis levels.
The technique...
Master Transcription Regulators

