Ndr kinases regulate retinal interneuron proliferation and homeostasis
Ndr2/Stk38l encodes a protein kinase associated with the Hippo tumor suppressor pathway and is mutated in a naturally-occurring canine early retinal degeneration (erd). To elucidate the retinal functions of Ndr2 and its paralog Ndr1/Stk38 , we generated Ndr1 and Ndr2 single knockout mice. Although r...
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Veröffentlicht in: | Scientific reports 2018-08, Vol.8 (1), p.12544-21, Article 12544 |
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Sprache: | eng |
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Zusammenfassung: | Ndr2/Stk38l
encodes a protein kinase associated with the Hippo tumor suppressor pathway and is mutated in a naturally-occurring canine early retinal degeneration (erd). To elucidate the retinal functions of
Ndr2
and its paralog
Ndr1/Stk38
, we generated
Ndr1
and
Ndr2
single knockout mice. Although retinal lamination appeared normal in these mice,
Ndr
deletion caused a subset of Pax6-positive amacrine cells to proliferate in differentiated retinas, while concurrently decreasing the number of GABAergic, HuD and Pax6-positive amacrine cells. Retinal transcriptome analyses revealed that
Ndr2
deletion increased expression of neuronal stress genes and decreased expression of synaptic organization genes. Consistent with the latter,
Ndr
deletion dramatically reduced levels of Aak1, an
Ndr
substrate that regulates vesicle trafficking. Our findings indicate that Ndr kinases are important regulators of amacrine and photoreceptor cells and suggest that Ndr kinases inhibit the proliferation of a subset of terminally differentiated cells and modulate interneuron synapse function via Aak1. |
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ISSN: | 2045-2322 2045-2322 |
DOI: | 10.1038/s41598-018-30492-9 |