Defining the chromatin-associated protein landscapes on Trypanosoma brucei repetitive elements using synthetic TALE proteins
Carloni, R.; Devlin, T.; Tong, P.; Auchynnikava, T.; Spanos, C. R.; Rappsilber, J.; Matthews, K. R.; Allshire, R. C.
Show abstract
Kinetoplastids, such as Trypansoma brucei, are eukaryotes that likely separated from the main lineage at an exceptionally early point in evolution. Consequently, many aspects of kinetoplastid biology differ significantly from other eukaryotic model systems, including yeasts, plants, worms, flies and mammals. As in many eukaryotes the T. brucei genome contains repetitive elements at various chromosomal locations including centromere- and telomere-associated repeats and interspersed retrotransposon elements. T. brucei also contains intermediate-sized and mini-chromosomes that harbor abundant 177 bp repeat arrays, and 70 bp repeat elements implicated in Variable Surface Glycoprotein (VSG) gene switching. In many eukaryotes repetitive elements are assembled in specialised chromatin such as heterochromatin, however, apart from centromere- and telomere-associated repeats, little is known about chromatin-associated proteins that decorate these and other repetitive elements in kinetoplastids. Here we utilize affinity selection of synthetic TALE DNA binding proteins designed to target specific repeat elements to identify enriched proteins by proteomics. Validating the approach, a telomere repeat binding TelR-TALE identifies many proteins previously implicated in telomere function. Furthermore, the 70R-TALE designed to bind 70 bp repeats indicates that proteins involved in DNA repair are enriched on these elements that reside adjacent to VSG genes. Interestingly, the 177 bp repeat binding 177R-TALE enriches for many kinetochore proteins suggesting that intermediate-sized and mini-chromosomes assemble kinetochores related in composition to those located on the main megabase chromosomes. This provides a first insight into the chromatin landscape of repetitive regions of the trypanosome genome with relevance for their mechanisms of chromosome integrity, immune evasion and cell replication.
Matching journals
The top 9 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- The SPARC complex defines RNAPII promoters in Trypanosoma brucei 97%
- Novel axonemal protein ZMYND12 interacts with TTC29 and DNAH1, and is required for male fertility and flagellum function. 96%
- A plant-like mechanism coupling m6A reading to polyadenylation safeguards transcriptome integrity and developmental genes partitioning in Toxoplasma 95%
Similar papers in this journal
- Immunoprecipitation of RNA-DNA hybrid interacting proteins in Trypanosoma brucei reveals conserved and novel activities, including in host immune evasion by antigenic variation 98%
- A histone methyltransferase-independent function of PRC2 controls small RNA dynamics during programmed DNA elimination in Paramecium 94%
- Hamster PIWI proteins bind to piRNAs with stage-specific size variations during oocyte maturation 94%
Similar papers in this journal
- Nucleolar targeting in an early-branching eukaryote suggests a general physicochemical mechanism for ribosome protein sorting 96%
- LAX28 is required for assembly of the inner dynein arm l1 and tether/tether head complex in the Leishmania flagellum 95%
- S. pombe DNA translocases Rrp1 and Rrp2 have distinct roles at centromeres and telomeres that ensure genome stability. 94%
Similar papers in this journal
- Centromeres in the thermotolerant yeast K. marxianusmediate attachment to a single microtubule 94%
- Rapid assembly of functional modules for generating human artificial chromosome constructs compatible with epigenetic centromere seeding 93%
- CUT&RUN detects distinct DNA footprints of RNA polymerase II near the transcription start sites 93%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.