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Hartman, B.

Publications and source records attributed to Hartman, B..

2 recordsLinked to original sources

Alpha-synuclein modulates the positioning of endolysosomes in melanoma cells

The Parkinsons disease-associated protein, alpha-synuclein (-syn; SNCA) is suspected of promoting melanoma progression. We recently knocked out SNCA in the human cutaneous melanoma cell line SK-MEL-28 to try to deduce the role of -syn in melanoma progression. Compared to control cells, the SK-MEL-28 SNCA-knockout (KO) cells have significantly inhibited growth, invasion, and migration, and the levels of the neural adhesion protein L1CAM and the transferrin receptor (TFR1) are significantly reduced. In this study, using transmission electron microscopy and immunofluorescence we show that SK-MEL-28 SNCA-KO cells relative to control cells exhibit an increased density of endolysosomes; increased perinuclear positioning of large (> 800 nm) endolysosomes; and decreased levels of the tetraspanins CD9 and CD81. Based on these results, we infer that -syn disrupts the balance between anterograde and retrograde traffic; thus, we propose that -syn is an accessory factor that that positively modulates the anterograde transport of endolysosomes and that loss of -syn expression results events (i)-(iii). We infer that low levels of L1CAM and CD81 (and other membrane proteins) are likely the underlying reason for the significantly reduced invasiveness and migratory properties of SK-MEL-28 SNCA-KO cells.

cancer biology↗

A new insight into the role of CART peptide in serotonergic function and anxiety

Cocaine and amphetamine-regulated transcript (CART) peptide has been established as a contributor to anxiogenic behavior. Genetic mutations in the CART gene are associated with anxiety and depression, and increased CART expression has been reported in suicide victims. Extensive research has focused on the role of CART peptide in mesolimbic neurocircuitry, but its involvement in the dorsal raphe nucleus (DRN) and serotonin (5HT) system remains unexplored. Here we demonstrate that CART processes are proximal to 5HTDRN neurons and that microinjection of CART (55-102) peptide into the DRN has an anxiogenic effect in mice. Furthermore, central CART administration reduced cfos activation in 5HT neurons of the ventral DRN, which is a putative reward/anti-stress circuit. The inhibitory effect of CART on 5HTDRN neuronal function and local 5HT release is further demonstrated with in vivo fiber photometry coupled with calcium and 5HT biosensors and by mass spectrometry. Moreover, using Cre-dependent retrograde tracing, we observed DRN-projecting CART neurons in the Edinger Westphal nucleus (EW), nucleus accumbens (NAc), and various hypothalamic nuclei including the ventromedial hypothalamus (VMH). Interestingly, based on ex vivo electrophysiological recordings, acute stress increased excitability in DRN-projecting CART neurons located in the EW, but not in the VMH or NAc. This suggests that the stress may promote anxiety-like behavior by activating the EWCART[->]5HTDRN circuit that ultimately inhibits 5HT transmission. In sum, understanding the intricate dynamics of the CARTergic and 5HTergic systems proves crucial in addressing 5HT-related dysfunctions, providing invaluable insights into both health and disease.

neuroscience↗