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Published on: April 24, 2021
Blockade of endoplasmic reticulum stress-induced cell death by Ureaplasma parvum vacuolating factor
Fumiko Nishiumi1, Yasuhiro Kawai1,2, Yukiko Nakura1
1Department of Developmental Medicine, Research Institute, Women's and Children's Hospital, Osaka, Japan.
Abstract:
Previously, we found that Ureaplasma parvum internalised into HeLa cells and cytosolic accumulation of galectin-3. U. parvum induced the host cellular membrane damage and survived there. Here, we conducted vesicular trafficking inhibitory screening in yeast to identify U. parvum vacuolating factor (UpVF). U. parvum triggered endoplasmic reticulum (ER) stress and upregulated the unfolded protein response-related factors, including BiP, P-eIF2 and IRE1 in the host cells, but it blocked the induction of the downstream apoptotic factors. MicroRNA library screening of U. parvum-infected cells and UpVF-transfected cells identified miR-211 and miR-214 as the negative regulators of the apoptotic cascade under ER stress. Transient expression of UpVF induced HeLa cell death with intracellular vacuolization; however, some stable UpVF transformant survived. U. parvum-infected cervical cell lines showed resistance to actinomycin D, and UpVF stable transformant cell lines exhibited resistance to X-ray irradiation, as well as cisplatin and paclitaxel. UpVF expressing cervical cancer xenografts in nude mice also acquired resistance to cisplatin and paclitaxel. A mycoplasma expression vector based on Mycoplasma mycoides, Syn-MBA (multiple banded antigen)-UpVF, reduced HeLa cell survival compared with that of Syn-MBA after 72 hr of infection. These findings together suggest novel mechanisms for Ureaplasma infection and the possible implications for cervical cancer malignancy. TAKE AWAYS: • Ureaplasmal novel virulence factor, UpVF, was identified. • UpVF triggered ER stress but suppressed apoptotic cascade via miR-211 and -214. • UpVF conferred resistance to anticancer treatments both in vivo and in vitro. • Dual expression of MBA and UpVF in JCVI-syn3B showed host cell damage.
Insights
Ureaplasma parvum
Area of Science:
- Microbiology
- Cell Biology
- Oncology
Background:
- Ureaplasma parvum infection causes host cell membrane damage and survival within cells.
- U. parvum triggers endoplasmic reticulum (ER) stress but inhibits apoptosis in host cells.
Purpose of the Study:
- To identify the Ureaplasma parvum vacuolating factor (UpVF) responsible for cellular effects.
- To elucidate the role of UpVF in ER stress, apoptosis regulation, and cancer treatment resistance.
Main Methods:
- Vesicular trafficking inhibitory screening in yeast to identify UpVF.
- MicroRNA library screening of infected and transfected cells.
- In vitro and in vivo models using HeLa cells, cervical cell lines, and xenografts.
Main Results:
- UpVF was identified as a virulence factor triggering ER stress and upregulating UPR factors.
- miR-211 and miR-214 were identified as negative regulators of apoptosis under ER stress.
- UpVF expression conferred resistance to various anticancer treatments (actinomycin D, X-ray, cisplatin, paclitaxel) in vitro and in vivo.
Conclusions:
- UpVF plays a novel role in Ureaplasma infection by modulating host cell responses.
- UpVF's ability to induce ER stress while suppressing apoptosis and conferring treatment resistance has implications for cervical cancer malignancy.
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