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Published on: February 21, 2019
Intracellular trafficking of RNASET2, a novel component of P-bodies
Laura Vidalino1, Laura Monti, Albrecht Haase
1Molecular and Cellular Neurobiology Laboratory, Centre for Integrative Biology, University of Trento, Via Delle Regole 101, 38123 Mattarello, Trento, Italy.
Background Information:
The ribonucleases (RNases) constitute a heterogeneous group of enzymes, which exert diverse and specific biological functions. Several RNases have been shown to control gene expression and cell differentiation. RNASET2, a novel member of the Rh/T2/S family of RNases, exerts micro-environmental control of malignancy in different experimental models with a general onco-suppressor activity, since it prevents cancer proliferation. Indeed, RNASET2 was found to be downregulated at the transcript level in several primary ovarian tumours or cell lines and in melanoma cell lines. Although recent works shed light on the biological role of RNASET2 in delaying tumour growth, its trafficking within the cell is still poorly understood. RNASET2 seems to play diverse biological roles including turnover of tRNA in yeast as well as rRNA degradation in zebrafish.
Results:
Here, we have studied the intracellular trafficking of RNASET2 in mammalian cells. RNASET2 co-localizes with markers for the trans-Golgi network (TGN), which is the central sorting and processing station of the secretory pathway. Moreover, using the temperature-sensitive vesicular stomatitis glycoprotein, we demonstrate that RNASET2 undergoes delivery to the plasma membrane. In contrast to other RNA-interacting proteins, RNASET2 does not accumulate in stress granules upon metabolic stress in mammalian cells. Surprisingly, RNASET2 shows co-localization with processing bodies (P-bodies), which increases upon metabolic stress. Finally, cells lacking RNASET2 show a reduced numbers of P-bodies.
Conclusions:
In this study, we have identified two distinct cellular pools of RNASET2-containing granules. One pool undergoes membrane delivery using the TGN, and it is released to the extracellular environment. The second pool is recruited into P-bodies, suggesting a possible involvement of RNASET2 in P-body formation in mammalian cells.
Insights
This study reveals RNASET2
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Research
Background:
- Ribonucleases (RNases) are enzymes with diverse biological functions, including gene expression control.
- RNASET2, an RNase, exhibits tumor-suppressor activity by preventing cancer proliferation and is downregulated in several cancers.
- The intracellular trafficking of RNASET2 remains poorly understood.
Purpose of the Study:
- To investigate the intracellular trafficking of RNASET2 in mammalian cells.
- To elucidate the cellular localization and movement of RNASET2.
Main Methods:
- Co-localization studies with cellular markers (trans-Golgi network, plasma membrane).
- Utilized temperature-sensitive vesicular stomatitis glycoprotein to track protein delivery.
- Analyzed RNASET2 behavior under metabolic stress, including stress granules and processing bodies (P-bodies).
- Assessed P-body formation in cells lacking RNASET2.
Main Results:
- RNASET2 co-localizes with the trans-Golgi network (TGN) and is delivered to the plasma membrane.
- RNASET2 does not accumulate in stress granules but co-localizes with P-bodies, with increased co-localization under metabolic stress.
- Cells deficient in RNASET2 exhibit fewer P-bodies.
Conclusions:
- Identified two distinct cellular pools of RNASET2: one for extracellular release via the TGN, and another recruited to P-bodies.
- Suggests a potential role for RNASET2 in the formation of P-bodies in mammalian cells.
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