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Published on: August 13, 2017
Phospholipase A2 inhibits nuclear nucleoside triphosphatase activity and mRNA export in isolated nuclei from rat
Ju-Xiang Li1, Zai-Quan Li, Yong-Zheng Pang
1Department of Physiology and Pathophysiology, Health-Science Center, Peking University, Beijing 100083, China. juxiangli@hotmail.com
Abstract:
The present study is undertaken to investigate whether the phospholipase A(2) (PLA(2)) influences mRNA nucleocytoplasmic transport evaluated by nucleoside triphosphatase (NTPase) activity and mRNA export in isolated hepatic nuclear envelope. Isolated hepatic nuclei from rat liver were exposed to PLA(2) (10(-5) approximately 10(-2)/ml) with or without incorporation of nuclei with phosphatidylcholine (PC) liposome. Messenger RNA exports and NTPase activities of nuclear membrane were assayed using ATP and GTP as substrates. We found that the RNA efflux, evaluated by [3H] uridine, was potently decreased in a concentration-dependent manner, by incubation of hepatic nuclei with PLA(2), regardless using ATP or GTP as substrates. The PC content in nuclear membrane was also decreased by PLA(2)-treatment. The PC was incorporated into the nuclear membrane by addition of phospholipid liposomes into the incubation mixture. PC incorporation into the nuclear membrane did not alter mRNA export. However this resulted in a significant increase in mRNA export rate in PLA(2)-treated group. Messenger RNA export rate in PLA(2) (10(-3) unit/mL)- treated nuclear membrane was positively correlated with level of PC incorporation, both using ATP and GTP as substrates. The activity of nucleoside triphosphatase, a nuclear membrane-associated enzyme, showed parallel variations with mRNA transport. It is concluded that nuclear PLA(2) plays a regulatory role in RNA transport, which can be antagonized by exogenous PC. These might be pathophysiologically significance, although the mechanisms by which this effect takes place remain to be clarified.
Insights
Phospholipase A(2) (PLA(2)) inhibits mRNA nucleocytoplasmic transport in rat liver nuclei. However, incorporating phosphatidylcholine (PC) into the nuclear membrane can counteract this effect, restoring mRNA export rates.
Area of Science:
- Molecular Biology
- Cell Biology
- Biochemistry
Background:
- Nucleocytoplasmic transport is crucial for gene expression.
- Phospholipase A(2) (PLA(2)) is an enzyme involved in membrane lipid metabolism.
- The role of PLA(2) in mRNA transport is not fully understood.
Purpose of the Study:
- To investigate the effect of PLA(2) on mRNA nucleocytoplasmic transport.
- To evaluate the influence of PLA(2) on nucleoside triphosphatase (NTPase) activity.
- To determine if phosphatidylcholine (PC) can modulate PLA(2)'s effect on mRNA export.
Main Methods:
- Isolated rat hepatic nuclei were treated with varying concentrations of PLA(2).
- Nuclei were incubated with or without phosphatidylcholine (PC) liposomes.
- mRNA export was measured using [3H] uridine.
- NTPase activity was assayed using ATP and GTP as substrates.
Main Results:
- PLA(2) treatment significantly decreased mRNA efflux in a concentration-dependent manner.
- PLA(2) reduced PC content in the nuclear membrane.
- Incorporation of PC into the nuclear membrane restored mRNA export, particularly in PLA(2)-treated nuclei.
- NTPase activity correlated positively with mRNA transport rates.
Conclusions:
- Nuclear PLA(2) plays a regulatory role in mRNA nucleocytoplasmic transport.
- Exogenous PC can antagonize the inhibitory effect of PLA(2) on mRNA export.
- These findings suggest potential pathophysiological significance, warranting further mechanistic investigation.
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