Post-transcriptional control of enamel matrix mineralization by TENT5A-mediated cytoplasmic polyadenylation
Aranaz-Novaliches, G.; Gewartowska, O.; Spoutil, F.; Mroczek, S.; Talacko, P.; Harant, K.; Augusto-Vale, A.-M.; Krejzova, I.; Madureira Trufen, C. E.; Krawczyk, P.; Benda, A.; Novosadova, V.; Sedlacek, R.; Dziembowski, A.; Prochazka, J.
Show abstract
Tooth enamel formation, or amelogenesis, is a complex biomineralization process regulated by ameloblasts cells. These cells secrete enamel matrix proteins (EMPs), including Amelogenin (AMELX) and Ameloblastin (AMBN), which are essential for hydroxyapatite crystal deposition during enamel mineralization. Precise regulation of this process ensures the mechanical and chemical strength of dental enamel. Using Tent5a knock-out (KO) mouse, we demonstrated that TENT5A, a non-canonical poly(A) polymerase is crucial for the stability, translation, and secretion of EMP mRNAs, particularly AMELX, during amelogenesis. TENT5A-deficient mice exhibited Amelogenesis imperfecta, characterized by enamel hypomineralization, reduced thickness, and disrupted ultrastructure, as revealed by micro-computed tomography. Through nanopore direct mRNA sequencing, we identified that TENT5A polyadenylates Amelx and other mRNAs encoding secreted proteins, enhancing their stability and translation in the endoplasmic reticulum. Moreover, loss of TENT5A altered AMELX secretion and extracellular self-assembly, impairing matrix organization and hydroxyapatite deposition. This study highlights the role of TENT5A in post-transcriptional regulation during enamel formation, demonstrating its importance in enamel homeostasis. TeaserTENT5A adds poly(A) tails to specific mRNAs in enamel, enhancing their expression, which is crucial for dental mineralization.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Robust Acquisition of High Resolution Spatial Transcriptomes from Preserved Tissues with Immunofluorescence Based Laser Capture Microdissection 92%
- b3galt6 knock-out zebrafish recapitulate β3GalT6-deficiency disorders in human and reveal a trisaccharide proteoglycan linkage region 92%
- Functional Characterization of the Lin28/let-7 Circuit during Forelimb Regeneration in Ambystoma mexicanum and its Influence on Metabolic Reprogramming 92%
Similar papers in this journal
- MAGI1 inhibits the AMOTL2/p38 stress pathway and prevents luminal breast tumorigenesis 92%
- The polymicrogyria-associated GPR56 promoter preferentially drives gene expression in developing GABAergic neurons in common marmosets 92%
- MYCN-induced nucleolar stress drives an early senescence-like transcriptional program in hTERT-immortalized RPE cells 92%
Similar papers in this journal
- The medaka alg2 mutant is a model for hypo-N-glycosylation-associated retinitis pigmentosa 93%
- Retrovirus-derived acquired genes, RTL5 and RTL6, are novel constituents of the innate immune system in the eutherian brain. 93%
- Canonical Wnt signaling regulates soft palate development through mediating ciliary homeostasis 93%
"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.