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Human alternative Klotho mRNA is a nonsense-mediated mRNA decay target inefficiently spliced in renal disease
Rik Mencke, Geert Harms, Jill Moser, Matijs van Meurs, Arjan Diepstra, Henri G. Leuvenink, Jan-Luuk Hillebrands
Rik Mencke, Geert Harms, Jill Moser, Matijs van Meurs, Arjan Diepstra, Henri G. Leuvenink, Jan-Luuk Hillebrands
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Research Article Aging Nephrology

Human alternative Klotho mRNA is a nonsense-mediated mRNA decay target inefficiently spliced in renal disease

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Abstract

Klotho is a renal protein involved in phosphate homeostasis, which is downregulated in renal disease. It has long been considered an antiaging factor. Two Klotho gene transcripts are thought to encode membrane-bound and secreted Klotho. Indeed, soluble Klotho is detectable in bodily fluids, but the relative contributions of Klotho secretion and of membrane-bound Klotho shedding are unknown. Recent advances in RNA surveillance reveal that premature termination codons, as present in alternative Klotho mRNA (for secreted Klotho), prime mRNAs for degradation by nonsense-mediated mRNA decay (NMD). Disruption of NMD led to accumulation of alternative Klotho mRNA, indicative of normally continuous degradation. RNA IP for NMD core factor UPF1 resulted in enrichment for alternative Klotho mRNA, which was also not associated with polysomes, indicating no active protein translation. Alternative Klotho mRNA transcripts colocalized with some P bodies, where NMD transcripts are degraded. Moreover, we could not detect secreted Klotho in vitro. These results suggest that soluble Klotho is likely cleaved membrane-bound Klotho only. Furthermore, we found that, especially in acute kidney injury, splicing of the 2 mRNA transcripts is dysregulated, which was recapitulated by various noxious stimuli in vitro. This likely constitutes a novel mechanism resulting in the downregulation of membrane-bound Klotho.

Authors

Rik Mencke, Geert Harms, Jill Moser, Matijs van Meurs, Arjan Diepstra, Henri G. Leuvenink, Jan-Luuk Hillebrands

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Figure 8

The relative abundance of the Klotho gene transcripts is dysregulated in vitro after different stimuli.

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The relative abundance of the Klotho gene transcripts is dysregulated in...
(A) RT-PCR analysis for both Klotho transcripts after application of a heat shock as a physical stressor (45 min at 43°C) to HK-2 cells, that were lysed before the heat shock (t = –1 hour), after the heat shock (t = 0 hour), or 24 hours later. (B) Densitometric quantification of A, showing an increase in the alternative/membrane-bound Klotho mRNA ratio after 24 hours. (C) RT-PCR analysis for both Klotho transcripts after stimulation with different concentrations of H2O2 for 24 hours, to induce oxidative stress in HK-2 cells. (D) Densitometric quantification of C, showing an increase in the alternative/membrane-bound Klotho mRNA ratio after stimulation. (E) RT-PCR analysis for both Klotho transcripts after stimulation of HK-2 cells with different concentrations of indoxyl sulfate for 48 hours, as a model for uremia. (F) Densitometric quantification of E, showing a dose-dependent increase in the alternative/membrane-bound Klotho mRNA ratio after stimulation. Depicted are individual data points representing mean of 3 independent experiments, performed in triplicate (plotted with mean ± SD). *P < 0.05, **P < 0.01, ***P < 0.001, as tested by one-way ANOVA with Bonferroni’s post-hoc test.

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ISSN 2379-3708

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