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An international team led by EPFL has discovered a powerful anti-aging pathway in roundworms, revealing how boosting the cell ...
Our cells carry out hundreds of thousands of important functions every day, all of which are carefully orchestrated at a ...
The vacuolar ATPases are proton pumps that have a central role in maintaining the pH of intracellular compartments and in proton transport across the plasma membrane. Their activity is controlled ...
Furthermore, vacuolar fission is required for proper vacuolar inheritance during mitosis and acute response to osmotic shock in yeast, however the molecular mechanism of fission is not fully ...
Figure 4. Vacuolar nitrate content reduced in overexpression lines. (A–C) Plants were grown hydroponically for 28 days, the leaves and roots of NPF5.10, NPF5.14, and NPF8.5 overexpression lines were ...
Vacuolar acidification is essential for vacuoles in diverse physiological functions. However, its role in plant defense, and whether and how pathogens affect vacuolar acidification to promote ...
Corresponding author Prof. Yoshinori Ohsumi of the Tokyo Tech, who was awarded the 2016 Nobel Prize in Physiology or Medicine for his pioneering work in the field of autophagy, explained the group’s ...
Intriguingly, auxin treatment restricted the vacuolar occupancy of the cell (Fig. 4 N, O, and V), but the effect of auxin on vacuolar occupancy was abolished by pharmacological or genetic interference ...
The vacuolar collapse has been proposed to be the crucial event in plant cell death (Jones, 2001). An ultrastructural analysis and a viability assay showed that TMV-induced cell death was preceded by ...
Vacuolar SNARE VTI11 is strictly required for auxin-reliant vacuolar morphogenesis and loss of function renders cells largely insensitive to auxin-dependent growth inhibition. Our data suggests that ...
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