Neuroglobin has been identified as a respiratory protein that is primarily expressed in the mammalian nervous system. Here we present the first detailed analysis of neuroglobin from a non-mammalian vertebrate, the zebrafish Danio rerio. The zebrafish neuroglobin gene reveals a mammalian-type exon-intron pattern in the coding region (B12.2, E11.0, and G7.0), plus an additional 5'-non-coding exon. Similar to the mammalian neuroglobin, the zebrafish protein displays a hexacoordinate deoxy-binding scheme. Flash photolysis kinetics show the competitive binding on the millisecond timescale of external ligands and the distal histidine, resulting in an oxygen affinity of 1 torr. Western blotting, immune staining, and mRNA in situ hybridization demonstrate neuroglobin expression in the fish central nervous system and the retina but also in the gills. Neurons containing neuroglobin have a widespread distribution in the brain but are also present in the olfactory system. In the fish retina, neuroglobin is mainly present in the inner segments of the photoreceptor cells. In the gills, the chloride cells were identified to express neuroglobin. Neuroglobin appears to be associated with mitochondria-rich cell types and thus oxygen consumption rates, suggesting a myoglobin-like function of this protein in facilitated oxygen diffusion.
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http://dx.doi.org/10.1074/jbc.M402011200 | DOI Listing |
Innov Clin Neurosci
December 2024
Drs. Ramli, Rusdi, Kurniawan, and Evelyn are with the Department of Neurology, Faculty of Medicine, Universitas Indonesia in Jakarta, Indonesia.
Prognostic markers can optimize the management of acute ischemic stroke (AIS). Neuroglobin (Ngb), which plays a role in intraneuronal oxygen transport and hypoxia resistance, is a potential prognostic marker in AIS. A cohort study was conducted on patients with AIS treated at Dr.
View Article and Find Full Text PDFClin Interv Aging
December 2024
Centre of Medical Simulations, Faculty of Medicine, Medical University of Gdańsk, Gdańsk, Poland.
In this work, we investigated the H2O2-induced oligomerization of wild-type human neuroglobin (hNgb) and of some selected variants (C46AC55A, Y44A, Y44F, Y44AC46AC55A, Y44AC46AC55A) to clarify how the process is affected by the Cys46/Cys55 disulfide bond and the distal H-bonding network and to figure out the molecular determinants of the H2O2-induced formation of amyloid type structures and hNgb aggregates. It turns out that hydrogen peroxide exerts a twofold effect on hNgb, inducing both heme breakdown and protein dimerization/polymerization. The enhanced resistance to the oxidizing effect of H2O2 of the disulfide free variants indicates that both effects are strictly influenced by the heme accessibility for H2O2.
View Article and Find Full Text PDFCommun Biol
December 2024
School of Chemistry and Chemical Engineering, University of South China, Hengyang, China.
Cell Stress
November 2024
Department of Science, Section Biomedical Sciences and Technology, University Roma Tre, V.le G. Marconi Rome, 00146 Italy.
Aberrant response to physiological cell stress is part of the mechanisms underlying the development of diverse human diseases, including neuropathologies. Neuroglobin (NGB), an intracellular monomeric globin, has gained attention for its role in endogenous stress response pathways in neuroprotection. To date, evidence supports the concept of NGB as an inducible protein, triggered by physiological and pathological stimuli via transcriptional and/or post-transcriptional mechanisms, offering cell-autonomous neuroprotective functions under various cellular stresses.
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