bioRxiv · 10.1101/2024.06.29.601350
Elucidating the Transport Mechanisms and Metabolic Roles of Serine, Threonine, and Glycine in Trypanosoma cruzi
Abstract
O_SCPLOWLC_SCPLOW-Serine (O_SCPLOWLC_SCPLOW-Ser) and O_SCPLOWLC_SCPLOWO_SCPCAP-C_SCPCAPThreonine (O_SCPLOWLC_SCPLOWO_SCPCAP-C_SCPCAPThr) have versatile roles in metabolism. In addition to their use in protein synthesis, these amino acids participate in the biosynthesis pathways of other amino acids and even phospholipids. Furthermore, O_SCPLOWLC_SCPLOW-Ser and O_SCPLOWLC_SCPLOWO_SCPCAP-C_SCPCAPThr can be substrates for a Ser/Thr dehydratase (Ser/ThrDH), resulting in pyruvate (Pyr) and 2-oxobutyrate, respectively, thus being amino acids with anaplerotic potential. Trypanosoma cruzi, the etiological agent of Chagas disease, uses amino acids in several biological processes: metacyclogenesis, infection, resistance to nutritional and oxidative stress, osmotic control, etc. In this study, we investigated the import and metabolism of O_SCPLOWLC_SCPLOW-Ser, O_SCPLOWLC_SCPLOWO_SCPCAP-C_SCPCAPThr, and Gly in T. cruzi. Our results demonstrate that these amino acids are transported from the extracellular environment into T. cruzi cells through a saturable transport system that fits the Michaelis-Menten model. Our results show that O_SCPLOWLC_SCPLOW-Ser and O_SCPLOWLC_SCPLOWO_SCPCAP-C_SCPCAPThr can sustain epimastigote (Epi) cell viability under nutritional stress (NS) conditions and can stimulate oxygen consumption to maintain intracellular ATP levels. Additionally, our findings indicate that O_SCPLOWLC_SCPLOW-Ser plays a role in establishing the mitochondrial membrane potential ({Delta}{Psi}m) in T. cruzi. O_SCPLOWLC_SCPLOW-Ser is also involved in energy metabolism via the Ser-Pyr pathway, which stimulates the production and subsequent excretion of acetate and alanine. Our results demonstrate the importance of O_SCPLOWLC_SCPLOW-Ser and O_SCPLOWLC_SCPLOW-Thr in the energy metabolism of T. cruzi and provide new insights into the metabolic adaptations of this parasite during its life cycle.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Alencar, M. B., Girard, R. M. B. M., Crispim, M., Baptista, C. G., Biran, M., Bringaud, F., Silber, A. M.. 2024-06-30. Elucidating the Transport Mechanisms and Metabolic Roles of Serine, Threonine, and Glycine in Trypanosoma cruzi. https://doi.org/10.1101/2024.06.29.601350
Cite the original work for its findings. Save a collection to share your selection of sources.