Search bioRxiv⌕ Search

Biology subjects

Niqula, A.

Publications and source records attributed to Niqula, A..

2 recordsLinked to original sources

A specialized cold sensing system in the naked mole-rat

Avoiding cold or seeking warmth are universal animal needs. Homeothermic mammals maintain a constant body temperature despite fluctuating ambient temperatures. One exception is the naked mole-rat which lacks effective thermogenesis. We show that the naked mole-rat has evolved a greatly expanded cold sensing system. Compared to mice, this species has many more cold-sensitive sensory neurons and most express the cold-activated TRPM8 channel. The naked mole-rat TrpM8 gene harbors a unique upstream exon that when translated produces a TRPM8 protein with a 71 amino acid N-terminal extension. When expressed, the N-terminal extension prevents membrane targeting and abolishes TRPM8 function. Splice forms lacking the extension formed functional cold and menthol activated channels in vivo. Additionally, many naked mole-rat sensory neurons use a TRPM8-independent mechanism to detect cold. Thus, we identified molecular changes that confer both sensitivity and flexibility to cold sensing in a species that is critically dependent on following thermal cues.

neuroscience↗

Loss of Depalmitoylation Exaggerates Synaptic Upscaling and Leads to Neuroinflammation in a Lysosomal Storage Disease

Palmitoylation and depalmitoylation are the dichotomic processes of lipid modification regulating protein trafficking, recycling, and degradation, thereby controlling proteostasis. Despite our understanding of palmitoylation, depalmitoylation is far less studied. Here, we study a lysosomal depalmitoylating enzyme, palmitoyl-protein thioesterase 1 (PPT1), associated with the devastating neurodegenerative condition CLN1 disease and show that dark-rearing Ppt1-/- mice, which induces synaptic upscaling in vivo, worsen the symptoms. In Ppt1-/- cortical neurons, upscaling induction triggers exaggerated responses of synaptic calcium-permeable AMPA receptors composed of palmitoylated GluA1 subunits. Consequently, Ppt1-/- visual cortex exhibits hypersynchrony in vivo. Remarkably, we also find an overload of palmitoylated A-kinase anchor protein 5 (Akap5) in Ppt1-/- mouse brains, leading to microglial activation through NFAT. These findings indicate Ppt1 acts as a gatekeeper of homeostatic plasticity by regulating the proteostasis of palmitoylated synaptic proteins. Moreover, our results suggest that perturbed depalmitoylation results in neuroinflammation, which is common to neurodegenerative diseases.

neuroscience↗