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Prof. Minxin Guan's group published on Nucleic Acids Research

In this report, we investigated the molecular mechanism underlying a deafness-associated m.7516delA mutation affecting the 5′ end processing sites of mitochondrial tRNAAspand tRNASer(UCN). Anin ...

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Prof. Minxin Guan's group published on The Journal of Clinical Investigation

Leber’s hereditary optic neuropathy (LHON) is a maternally inherited eye disease. X-linked nuclear modifiers were proposed to modify the phenotypic manifestation of LHON-associated mitochondrial...

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Prof. Minxin Guan's group published on Nucleic Acids Research

In this report, we investigated the molecular mechanism underlying a deafness-associated m.7516delA mutation affecting the 5′ end processing sites of mitochondrial tRNAAspand tRNASer(UCN). Anin ...

READ MORE

Prof. Minxin Guan's group published on The Journal of Clinical Investigation

Leber’s hereditary optic neuropathy (LHON) is a maternally inherited eye disease. X-linked nuclear modifiers were proposed to modify the phenotypic manifestation of LHON-associated mitochondrial...

READ MORE

Prof. Minxin Guan's group published on Nucleic Acids Research

Mitochondrial tRNA processing defects were associated with human diseases but their pathophysiology remains elusively. The hypertension-associated m.4401A>G mutation resided at a spacer between mit...

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Prof. Minxin Guan's group published on Nucleic Acids Research

GTPBP3 is a highly conserved tRNA modifying enzyme for the biosynthesis of τm5U at the wobble position of mitochondrial tRNAGlu, tRNAGln, tRNALys, tRNATrpand tRNALeu(UUR). The previous investigati...

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Prof. Xiaohang Yang's group published on Aging Cell

By the end of neurogenesis in Drosophila pupal brain neuroblasts (NBs), nuclear Prospero (Pros) triggers cell cycle exit and terminates NB lifespan. Here, we reveal that in larval brain NBs, an intrin...

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EVENTSmore

ZJU-Tencent Games Joint Lab for Intelligent Graphics Innovative Technology set up

By the end of neurogenesis in Drosophila pupal brain neuroblasts (NBs), nuclear Prospero (Pros) triggers cell cycle exit and terminates NB lifespan. Here, we reveal that in larval brain NBs, an intrin...

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Congratulation our ZJU graduates!

By the end of neurogenesis in Drosophila pupal brain neuroblasts (NBs), nuclear Prospero (Pros) triggers cell cycle exit and terminates NB lifespan. Here, we reveal that in larval brain NBs, an intrin...

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Ultraviolet radiant energy-dependent functionalization regulates cellular behaviors on TiO2 nanodots

By the end of neurogenesis in Drosophila pupal brain neuroblasts (NBs), nuclear Prospero (Pros) triggers cell cycle exit and terminates NB lifespan. Here, we reveal that in larval brain NBs, an intrin...

READ MORE