Abstract
Prolyl 4-hydroxylases (P4Hs) have vital roles in regulating collagen synthesis and hypoxia response. A trans-membrane P4H (P4H-TM) is a recently identified member of the family. Biallelic loss of function P4H-TM muta-tions cause a severe autosomal recessive intellectual disability syndrome in humans, but functions of P4H-TM are essentially unknown at cellular level. Our microarray data on P4h-tm/ mouse cortexes where P4H-TM is abundantly expressed indicated expression changes in genes involved in calcium signaling and expression of several calcium sequestering ATPases was upregulated in P4h-tm/ primary mouse astrocytes. Cytosolic and intraorganellar calcium imaging of P4h-tm/ cells revealed that receptor-operated calcium entry (ROCE) and store-operated calcium entry (SOCE) and calcium re-uptake by mitochondria were compromised. HIF1, but not HIF2, was found to be a key mediator of the P4H-TM effect on calcium signaling. Furthermore, total internal reflection fluorescence (TIRF) imaging showed that calcium agonist-induced gliotransmission was atte-nuated in P4h-tm/ astrocytes. This phenotype was accompanied by redistribution of mitochondria from dis-tal processes to central parts of the cell body and decreased intracellular ATP content. Our data show that P4H-TM is a novel regulator of calcium dynamics and gliotransmission.
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Byts, N., Sharma, S., Laurila, J., Paudel, P., Miinalainen, I., Ronkainen, V. P., … Myllyharju, J. (2021). Transmembrane prolyl 4-hydroxylase is a novel regulator of calcium signaling in astrocytes. ENeuro, 8(1), 1–23. https://doi.org/10.1523/ENEURO.0253-20.2020
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