scholarly journals Responses of solitary retinal horizontal cells from Carassius auratus to L-glutamate and related amino acids.

1984 ◽  
Vol 348 (1) ◽  
pp. 255-270 ◽  
Author(s):  
A T Ishida ◽  
A Kaneko ◽  
M Tachibana
Author(s):  
Michael W. Country ◽  
Michael G. Jonz

Neurons of the retina require oxygen to survive. In hypoxia, neuronal ATP production is impaired, ATP-dependent ion pumping is reduced, transmembrane ion gradients are dysregulated, and [Ca2+]i increases enough to trigger excitotoxic cell death. Central neurons of the common goldfish (Carassius auratus) are hypoxia-tolerant, but little is known about how goldfish retinas withstand hypoxia. To study the cellular mechanisms of hypoxia tolerance, we isolated retinal interneurons (horizontal cells; HCs), and measured intracellular Ca2+ concentration ([Ca2+]i) with Fura-2. Goldfish HCs maintained [Ca2+]i throughout 1 h of hypoxia, whereas [Ca2+]i increased irreversibly in HCs of the hypoxia-sensitive rainbow trout (Oncorhynchus mykiss) with just 20 min of hypoxia. Our results suggest mitochondrial ATP-dependent K+ channels (mKATP) are necessary to stabilize [Ca2+]i throughout hypoxia. In goldfish HCs, [Ca2+]i increased when mKATP was blocked with glibenclamide or 5-HD, whereas an mKATP agonist (diazoxide) prevented [Ca2+]i from increasing in hypoxia in trout HCs. We showed that hypoxia protects goldfish HCs via mKATP channels. Glycolytic inhibition with 2-deoxyglucose increased [Ca2+]i, which was rescued by hypoxia in an mKATP-dependent manner. We found no evidence of plasmalemmal KATP channels in patch-clamp experiments. Instead, we confirmed the involvement of KATP in mitochondria with TMRE imaging, as hypoxia rapidly (<5 min) depolarized mitochondria in an mKATP-sensitive manner. We conclude that mKATP channels initiate a neuroprotective pathway in goldfish HCs to maintain [Ca2+]i and avoid excitotoxicity in hypoxia. This model provides novel insight into the cellular mechanisms of hypoxia tolerance in the retina.


2021 ◽  
Vol 22 (1) ◽  
Author(s):  
Yusu Tian ◽  
Yuandong Sun ◽  
Mi Ou ◽  
Xiaojuan Cui ◽  
Dinggang Zhou ◽  
...  

AbstractBackgroundGATA1 is a key transcription factor in the GATA family, and promotes the differentiation and maturation of red blood cell, which is essential for normal hematopoiesis.ResultsOur results showed that the cDNA sequence ofGATA1 was 2730 bp long encoding 443 amino acids. qRT-PCR analysis demonstrated thatGATA1 had the highest expression in testis (T), followed by pituitary (P) and spleen (S).GATA1 gene expression inC. auratusred var. embryo from the neuroblast stage (N) to the embryo hatching (H) changes continuously; and the gene expression levels of nonylphenol (NP)-treated and those of control embryos were significantly different. Moreover, Methylation levels ofGATA1gene in NP-treated embryos were higher than those in control embryos, indicating that NP affectedGATA1methylation.ConclusionsOur study provides cues for further studying the roles ofGATA1 gene in fish development, and suggested a potential molecular mechanism by which NP leads to abnormal development of fish embryos.


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