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Neuman, V.

Publications and source records attributed to Neuman, V..

2 recordsLinked to original sources

Decoding the Structural and Functional Impact of the Leukaemia-Associated A338V Mutation in GPR183

G protein-coupled receptors rely on dynamic conformational changes to coordinate G protein activation and recruitment of regulatory transducers such as G protein-coupled receptor kinases and {beta}-arrestins. The chemotactic receptor GPR183 has been implicated in a context-dependent role in hematological malignancies. Here, we investigated the impact of A338V mutation located within the C-terminal tail of GPR183. This mutation is associated with acute myeloid leukaemia. Using bioluminescence resonance energy transfer-based assays in HEK293A cells, we assessed receptor-proximal signaling events. The A338V variant displayed preserved agonist potency and comparable agonist-induced Gi activation relative to wild type, although constitutive activity towards Gi was modestly reduced. In contrast, recruitment of GRK2 and {beta}-arrestin2 was consistently impaired across multiple assay configurations. These differences were not attributable to altered receptor abundance, as the C-tail untagged mutant exhibited increased plasma membrane expression despite reduced regulatory transducer engagement. While intramolecular conformational biosensor measurements revealed subtle differences in global receptor conformation between WT and A338V, extensive molecular dynamics simulations supported the altered conformational sampling of the C-terminal tail in the A338V variant. Together, these data support a model in which the A338V substitution selectively alters C-terminal structural dynamics, impairing GRK2 and {beta}-arrestin2 recruitment while preserving G protein activation.

pharmacology and toxicology↗

An imbalance of naive and effector T-cell phenotypes in early type 1 diabetes across conventional and regulatory subsets

Type 1 diabetes (T1D) is an autoimmune disease caused by the loss of self-tolerance toward insulin-producing pancreatic {beta}-cells. Although the etiology of T1D is not fully understood, it is linked to dysregulation of the T-cell compartment. To identify T-cell signatures associated with T1D, we performed single-cell transcriptomic analysis of peripheral blood T-cells from newly diagnosed children, the same children after one year, and healthy donors. We observed reduced expression of genes related to effector and cytotoxic T-cell functions across conventional, unconventional, and regulatory T-cell subsets in diabetic children, particularly at the time of diagnosis. These findings were supported by flow cytometry analysis of the same cohort and by reanalysis of publicly available data. Overall, our results suggest that T1D is associated with impaired T-cell effector differentiation, which may contribute to immune dysregulation and loss of self-tolerance.

immunology↗