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Tadinada, S. M.

Publications and source records attributed to Tadinada, S. M..

2 recordsLinked to original sources

OPA1 Deletion in Brown Adipose Tissue Improves Thermoregulation and Systemic Metabolism via FGF21

Adrenergic stimulation of brown adipocytes alters mitochondrial dynamics, including proteolytic processing of the mitochondrial fusion protein optic atrophy 1 (OPA1). However, direct mechanisms linking OPA1 to brown adipose tissue (BAT) physiology are incompletely understood. By deleting OPA1 selectively in BAT (OPA1 BAT KO), we demonstrate that OPA1 is required for cold-induced thermogenesis. Unexpectedly, OPA1 deficiency induced fibroblast growth factor 21 (FGF21) as a BATokine in an activating transcription factor 4 (ATF4)- dependent manner. BAT-derived FGF21 mediates an adaptive response in OPA1 BAT KO mice, by inducing browning of white adipose tissue (WAT), increasing resting metabolic rates, and improving thermoregulation. However, FGF21 does not mediate the resistance to diet-induced obesity observed in these animals. These findings reveal a requirement for OPA1 in BAT thermogenesis, and uncovers a homeostatic mechanism of BAT-mediated metabolic protection governed by an ATF4-FGF21 axis, that is activated independently of BAT thermogenic function.

physiology↗

Macrophage-to-sensory neuron crosstalk mediated by Angiotensin II type-2 receptor elicits neuropathic pain

Peripheral nerve damage initiates a complex series of cellular and structural processes that culminate in chronic neuropathic pain. Our study defines local angiotensin signaling via activation of the Angiotensin II (Ang II) type-2 receptor (AT2R) on macrophages as the critical trigger of neuropathic pain. An AT2R-selective antagonist attenuates neuropathic, but not inflammatory pain hypersensitivity in mice, and requires the cell damage-sensing ion channel transient receptor potential family-A member-1 (TRPA1). Mechanical and cold pain hypersensitivity that are characteristic of neuropathic conditions can be attenuated by chemogenetic depletion of peripheral macrophages and AT2R-null hematopoietic cell transplantation. Our findings show no AT2R expression in mouse or human sensory neurons, rather AT2R expression and activation in macrophages triggers production of reactive oxygen/nitrogen species, which trans-activate TRPA1 on sensory neurons. Our study defines the precise neuro-immune crosstalk underlying nociceptor sensitization at the site of nerve injury. This form of cell-to-cell signaling represents a critical peripheral mechanism for chronic neuropathic pain, and therefore identifies multiple analgesic targets.

neuroscience↗