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Species-Specific Formation of Paraspeckles in Intestinal Epithelium Revealed by Characterization of NEAT1 in Naked Mole-rat
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Abstract
Paraspeckles are mammalian-specific nuclear bodies built on the long noncoding RNA
NEAT1_2
. The molecular mechanisms of paraspeckle formation have been mainly studied using human or mouse cells, and it is not known if the same molecular components are involved in the formation of paraspeckles in other mammalian species. We thus investigated the expression pattern of
NEAT1_2
in naked mole-rats (n
NEAT1_2
), which exhibit extreme longevity and lower susceptibility to cancer. In the intestine, n
NEAT1_2
is widely expressed along the entire intestinal epithelium, which is different from the expression of m
Neat1_2
, that is restricted to the cells of the distal tip in mice. Notably, the expression of FUS, a FET family RNA binding protein, essential for the formation of paraspeckles both in humans and mice, was absent in the distal part of the intestinal epithelium in naked mole-rats. Instead, mRNAs of other FET family proteins EWSR1 and TAF15 were expressed in the distal region. Exogenous expression of these proteins in Fus-deficient murine embryonic fibroblast cells rescued the formation of paraspeckles. These observations suggest that n
NEAT1_2
recruits different set of RNA binding proteins in a cell type-specific manner during the formation of paraspeckles in different organisms.
Title: Species-Specific Formation of Paraspeckles in Intestinal Epithelium Revealed by Characterization of
NEAT1
in Naked Mole-rat
Description:
Abstract
Paraspeckles are mammalian-specific nuclear bodies built on the long noncoding RNA
NEAT1_2
.
The molecular mechanisms of paraspeckle formation have been mainly studied using human or mouse cells, and it is not known if the same molecular components are involved in the formation of paraspeckles in other mammalian species.
We thus investigated the expression pattern of
NEAT1_2
in naked mole-rats (n
NEAT1_2
), which exhibit extreme longevity and lower susceptibility to cancer.
In the intestine, n
NEAT1_2
is widely expressed along the entire intestinal epithelium, which is different from the expression of m
Neat1_2
, that is restricted to the cells of the distal tip in mice.
Notably, the expression of FUS, a FET family RNA binding protein, essential for the formation of paraspeckles both in humans and mice, was absent in the distal part of the intestinal epithelium in naked mole-rats.
Instead, mRNAs of other FET family proteins EWSR1 and TAF15 were expressed in the distal region.
Exogenous expression of these proteins in Fus-deficient murine embryonic fibroblast cells rescued the formation of paraspeckles.
These observations suggest that n
NEAT1_2
recruits different set of RNA binding proteins in a cell type-specific manner during the formation of paraspeckles in different organisms.
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