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Centrin 2 localizes to the vertebrate nuclear pore and plays a role in mRNA and protein export

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MOLECULAR AND CELLULAR BIOLOGY
卷 28, 期 5, 页码 1755-1769

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AMER SOC MICROBIOLOGY
DOI: 10.1128/MCB.01697-07

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  1. NATIONAL INSTITUTE OF GENERAL MEDICAL SCIENCES [K12GM068524, R01GM033279] Funding Source: NIH RePORTER
  2. NIGMS NIH HHS [K12 GM068524, R01 GM033279, R01 GM-33279, R01 GM033279-24, GM 68524] Funding Source: Medline

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Centrins in vertebrates have traditionally been associated with microtubule-nucleating centers such as the centrosome. Unexpectedly, we found centrin 2 to associate biochemically with nucleoporins, including the Xenopus laevis Nup107-160 complex, a critical subunit of the vertebrate nuclear pore in interphase and of the kinetochores and spindle poles in mitosis. Immunofluorescence of Xenopus cells and in vitro reconstituted nuclei indeed revealed centrin 2 localized at the nuclear pores. Use of the mild detergent digitonin in immunofluorescence also allowed centrin 2 to be clearly visualized at the nuclear pores of human cells. Disruption of nuclear pores using RNA interference of the pore assembly protein ELYS/MEL-28 resulted in a specific decrease of centrin 2 at the nuclear rim of HeLa cells. Functionally, excess expression of either the Nor C-terminal calcium-binding domains of human centrin 2 caused a dominant-negative effect on both mRNA and protein export, leaving protein import intact. The mRNA effect mirrors that found for the Saccharomyes cerevisiae centrin Cdc31p at the yeast nuclear pore, a role until now thought to be unique to yeast. We conclude that in vertebrates, centrin 2 interacts with major subunits of the nuclear pore, exhibits nuclear pore localization, and plays a functional role in multiple nuclear export pathways.

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