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NUCLEAR PORE ANCHOR, the Arabidopsis Homolog of Tpr/Mlp1/Mlp2/Megator, Is Involved in mRNA Export and SUMO Homeostasis and Affects Diverse Aspects of Plant Development

Xianfeng Morgan Xu, Annkatrin Rose, Sivaramakrishnan Muthuswamy, Sun Yong Jeong, Sowmya Venkatakrishnan, Qiao Zhao, Iris Meier
Xianfeng Morgan Xu
Plant Biotechnology Center and Department of Plant Cellular and Molecular Biology, Ohio State University, Columbus, Ohio 43210
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Annkatrin Rose
Plant Biotechnology Center and Department of Plant Cellular and Molecular Biology, Ohio State University, Columbus, Ohio 43210
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Sivaramakrishnan Muthuswamy
Plant Biotechnology Center and Department of Plant Cellular and Molecular Biology, Ohio State University, Columbus, Ohio 43210
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Sun Yong Jeong
Plant Biotechnology Center and Department of Plant Cellular and Molecular Biology, Ohio State University, Columbus, Ohio 43210
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Sowmya Venkatakrishnan
Plant Biotechnology Center and Department of Plant Cellular and Molecular Biology, Ohio State University, Columbus, Ohio 43210
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Qiao Zhao
Plant Biotechnology Center and Department of Plant Cellular and Molecular Biology, Ohio State University, Columbus, Ohio 43210
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Iris Meier
Plant Biotechnology Center and Department of Plant Cellular and Molecular Biology, Ohio State University, Columbus, Ohio 43210
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Published May 2007. DOI: https://doi.org/10.1105/tpc.106.049239

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Abstract

Vertebrate Tpr and its yeast homologs Mlp1/Mlp2, long coiled-coil proteins of nuclear pore inner basket filaments, are involved in mRNA export, telomere organization, spindle pole assembly, and unspliced RNA retention. We identified Arabidopsis thaliana NUCLEAR PORE ANCHOR (NUA) encoding a 237-kD protein with similarity to Tpr. NUA is located at the inner surface of the nuclear envelope in interphase and in the vicinity of the spindle in prometaphase. Four T-DNA insertion lines were characterized, which comprise an allelic series of increasing severity for several correlating phenotypes, such as early flowering under short days and long days, increased abundance of SUMO conjugates, altered expression of several flowering regulators, and nuclear accumulation of poly(A)+ RNA. nua mutants phenocopy mutants of EARLY IN SHORT DAYS4 (ESD4), an Arabidopsis SUMO protease concentrated at the nuclear periphery. nua esd4 double mutants resemble nua and esd4 single mutants, suggesting that the two proteins act in the same pathway or complex, supported by yeast two-hybrid interaction. Our data indicate that NUA is a component of nuclear pore-associated steps of sumoylation and mRNA export in plants and that defects in these processes affect the signaling events of flowering time regulation and additional developmental processes.

  • Received November 28, 2006.
  • Revised April 18, 2007.
  • Accepted May 2, 2007.
  • Published May 18, 2007.
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NUCLEAR PORE ANCHOR, the Arabidopsis Homolog of Tpr/Mlp1/Mlp2/Megator, Is Involved in mRNA Export and SUMO Homeostasis and Affects Diverse Aspects of Plant Development
Xianfeng Morgan Xu, Annkatrin Rose, Sivaramakrishnan Muthuswamy, Sun Yong Jeong, Sowmya Venkatakrishnan, Qiao Zhao, Iris Meier
The Plant Cell May 2007, 19 (5) 1537-1548; DOI: 10.1105/tpc.106.049239

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NUCLEAR PORE ANCHOR, the Arabidopsis Homolog of Tpr/Mlp1/Mlp2/Megator, Is Involved in mRNA Export and SUMO Homeostasis and Affects Diverse Aspects of Plant Development
Xianfeng Morgan Xu, Annkatrin Rose, Sivaramakrishnan Muthuswamy, Sun Yong Jeong, Sowmya Venkatakrishnan, Qiao Zhao, Iris Meier
The Plant Cell May 2007, 19 (5) 1537-1548; DOI: 10.1105/tpc.106.049239
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The Plant Cell Online: 19 (5)
The Plant Cell
Vol. 19, Issue 5
May 2007
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