scholarly journals Genetic interactions between the Golgi Ca2+/H+exchanger Gdt1 and the plasma compartmembrane calcium channel Cch1/Mid1 in the regulation of calcium homeostasis, stress response and virulence inCandida albicans

2015 ◽  
Vol 15 (7) ◽  
pp. fov069 ◽  
Author(s):  
Yanan Wang ◽  
Junjun Wang ◽  
Jianqing Cheng ◽  
Dayong Xu ◽  
Linghuo Jiang
PROTEOMICS ◽  
2007 ◽  
Vol 7 (5) ◽  
pp. 686-697 ◽  
Author(s):  
Harald Kusch ◽  
Susanne Engelmann ◽  
Dirk Albrecht ◽  
Joachim Morschhäuser ◽  
Michael Hecker

2014 ◽  
Vol 197 (5) ◽  
pp. 913-923 ◽  
Author(s):  
François Daigle ◽  
Sylvain Lerat ◽  
Giselda Bucca ◽  
Édith Sanssouci ◽  
Colin P. Smith ◽  
...  

AlthoughStreptomyces coelicoloris not resistant to tellurite, it possesses several TerD domain-encoding (tdd) genes of unknown function. To elucidate the function oftdd8, the transcriptomes ofS. coelicolorstrain M145 and of atdd8deletion mutant derivative (the Δtdd8strain) were compared. Several orthologs ofMycobacterium tuberculosisgenes involved in dormancy survival were upregulated in the deletion mutant at the visual onset of prodiginine production. These genes are organized in a putative redox stress response cluster comprising two large loci. A binding motif similar to the dormancy survival regulator (DosR) binding site ofM. tuberculosishas been identified in the upstream sequences of most genes in these loci. A predicted role for these genes in the redox stress response is supported by the low NAD+/NADH ratio in the Δtdd8strain. ThisS. coelicolorgene cluster was shown to be induced by hypoxia and NO stress. While thetdd8deletion mutant (the Δtdd8strain) was unable to maintain calcium homeostasis in a calcium-depleted medium, the addition of Ca2+in Δtdd8culture medium reduced the expression of several genes of the redox stress response cluster. The results shown in this work are consistent with Tdd8 playing a significant role in calcium homeostasis and redox stress adaptation.


2009 ◽  
Vol 74 (4) ◽  
pp. 862-875 ◽  
Author(s):  
Yong Zhu ◽  
Hao-Ming Fang ◽  
Yan-Ming Wang ◽  
Gui-Sheng Zeng ◽  
Xin-De Zheng ◽  
...  

2021 ◽  
Author(s):  
Helena Caria Martins ◽  
Oezge A Sungur ◽  
Carlotta Gilardi ◽  
Michael Pelzl ◽  
Silvia Bicker ◽  
...  

Bipolar disorder (BD) is a chronic mood disorder characterized by alternating manic and depressive episodes, often in conjunction with cognitive deficits. Dysregulation of neuroplasticity and calcium homeostasis as a result of complex genetic environment interactions are frequently observed in BD patients, but the underlying molecular mechanisms are largely unknown. Here, we show that a BD-associated microRNA, miR-499-5p, regulates neuronal dendrite development and cognitive function by downregulating the BD risk gene CACNB2. miR-499-5p expression is increased in peripheral blood of BD patients and healthy subjects at risk of developing the disorder due to a history of childhood maltreatment. This up-regulation is paralleled in the hippocampus of rats which underwent juvenile social isolation. Elevating miR-499-5p levels in rat hippocampal pyramidal neurons impairs dendritogenesis and reduces surface expression and activity of the voltage-gated L-type calcium channel Cav1.2. We further identified CACNB2, which encodes a regulatory β-subunit of Cav1.2, as a direct target of miR-499-5p in neurons. CACNB2 downregulation is required for the miR-499-5p dependent impairment of dendritogenesis, suggesting that CACNB2 is an important downstream target of miR-499-5p in the regulation of neuroplasticity. Finally, elevating miR-499-5p in the hippocampus in vivo is sufficient to induce short-term memory impairments in rats haploinsufficient for the Cav1.2 pore forming subunit Cacna1c. Taken together, we propose that stress-induced upregulation of miR-499-5p contributes to dendritic impairments and deregulated calcium homeostasis in BD, with specific implications for the neurocognitive dysfunction frequently observed in BD patients.


2018 ◽  
Vol 32 (S1) ◽  
Author(s):  
Maria Noterman ◽  
Min‐Kyoo Shin ◽  
Edwin Vazquez‐Rosa ◽  
Coral Cintrón‐Pérez ◽  
Anjali Rajadhyaksha ◽  
...  

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