Down-regulation of long non-coding RNAMALAT1inhibits granulosa cell proliferation in endometriosis by up-regulating P21 via activation of the ERK/MAPK pathway
article
OA: bronze
CC0
⤵ 21 in-corpus citations
AI-generated summary
Down-regulation of MALAT1 in endometriosis granulosa cells inhibits proliferation by up-regulating P21 via ERK/MAPK pathway activation.
One-sentence paraphrase of the abstract; not a substitute for reading it. No clinical advice. How this works
Abstract
STUDY QUESTION: Is there a specific mechanism underlying the association between lung adenocarcinoma transcript 1 (MALAT1) and endometriosis-related infertility? SUMMARY ANSWER: The down-regulation of MALAT1 in endometriosis granulosa cells (GCs) may have an adverse effect on the growth and development of oocytes by inhibiting GC proliferation, due to cell cycle-dependent mechanisms that enhance P21 expression through activation of the extracellular signal-regulated kinase (ERK)/mitogen-activated protein kinase (MAPK) pathway. WHAT IS KNOWN ALREADY: The association between endometriosis and infertility is well supported throughout the literature, and endometriosis per se and its surgical treatment have an adverse effect on the ovarian reserve and on oocyte development. MALAT1, one of the most extensively expressed and evolutionarily conserved transcripts, has been implicated to play a role in human development and many diseases. However, little is known about the role of MALAT1 long non-coding RNA (lncRNA) in endometriosis and its associated infertility. STUDY DESIGN, SIZE, DURATION: We measured MALAT1 lncRNA expression levels in GCs from 52 endometriosis patients and 52 controls. Also, MALAT1 was knocked down in a human GC tumor-derived cell line, KGN, to investigate the role of MALAT1 and its molecular mechanism in cell proliferation. PARTICIPANTS/MATERIALS, SETTING, METHODS: GCs were collected from women with or without endometriosis undergoing IVF or ICSI treatment. All endometriosis patients were diagnosed by laparoscopy or laparotomy, and control patients were limited to male factor or tubal disease and had a normal ovarian reserve. Quantitative real-time PCR (qRT-PCR) was used to measure the differential expression levels of MALAT1 lncRNA between endometriosis patients and controls. The receiver operating characteristic (ROC) curve was drawn to evaluate the diagnostic values of MALAT1 in endometriosis. In the KGN cell line, MALAT1 was knocked down with locked nucleic acid GapmeRs. Cell counting kit-8 assays, ethynyl-2-deoxyuridine assays and flow cytometry were used to study the role of MALAT1 in cell proliferation and cell-cycle progression, and western blotting was performed to detect the potential underlying mechanism. MAIN RESULTS AND THE ROLE OF CHANCE: We first found that MALAT1 lncRNA was significantly down-regulated in endometriosis GCs and was associated with the antral follicle count (R = 0.376, P < 0.001 versus control). In addition, MALAT1 lncRNA levels were significantly lower in the GCs of infertile women with advanced stages of endometriosis (P = 0.01 versus control). The ROC curves illustrated strong separation between all the endometriosis patients and the control group (AUC: 0.705; 95% CI: 0.606-0.804; P < 0.001), Stage I-II and control group (AUC: 0.651; 95% CI: 0.536-0.767; P = 0.016), and Stage III-IV and control group (AUC: 0.827; 95% CI: 0.718-0.936; P < 0.001). MALAT1 lncRNA was primarily localized in the nuclei of GCs. We found a negative correlation between MALAT1 lncRNA and P21 mRNA in the GCs from patients (R = -0.628; P < 0.001). MALAT1 knockdown in KGN cells inhibited cell proliferation and cell-cycle progression. In addition, MALAT1 knockdown induced an increase in both the mRNA and protein levels of P21, and of P53, phosphorylated ERK1/2 (p-ERK1/2) and phosphorylated c-Jun N-terminal protein kinase (p-JNK) protein levels, as well as causing a decrease in cyclin dependent kinase 2 (CDK2), cyclin D1 and p-P38 MAPK protein levels. Furthermore, inhibition of the ERK/MAPK pathway with U0126, the up-regulation of p-ERK1/2, P21 and P53, and the down-regulation of CDK2 and cyclin D1 by the knockdown of MALAT1 were all attenuated by MALAT1 knockdown. Therefore, MALAT1 may regulate GC proliferation through P21/P53-dependent control of the cell cycle, and the ERK/MAPK pathway participates in this process. LARGE SCALE DATA: None. LIMITATIONS, REASONS FOR CAUTION: The hormonal treatment used in IVF and surgical removal of endometriotic lesions may have altered MALAT1 expression in GCs. The ovarian granulosa-like tumor cell line, KGN, was used for further functional and mechanistic studies due to the difficulties in obtaining human GCs in sizable amounts and maintaining primary cultures. WIDER IMPLICATIONS OF THE FINDINGS: Our finding represents the first example of an lncRNA-based mechanism in endometriosis GCs. Women with endometriosis show altered MALAT1 expression levels in GCs that may impair fertility by regulating the function of GCs. Therefore, analysis of MALAT1 and its molecular mechanisms of action provide new insights into the pathogenesis of endometriosis and its associated infertility. STUDY FUNDING/COMPETING INTEREST(s): This work was supported by the National Natural Science Foundation of China (grant number: 81671524) and the National key research and development program of China (grant number: 2017YFC1001100). The authors declare there is no conflict of interest.
My notes (saved in your browser only)
Condition tags
MeSH descriptors
Citation neighborhood
Papers in the corpus that this work cites (lower rings, blue) and that cite this one (upper rings, green). Dot size scales with the paper's in-corpus citation count — bigger dot = more influential within the endo/adeno field. Click a dot to open that paper. [ expand to 2 hops ] — adds papers reached through this work's immediate citers/citees. Heavier; up to 60 extra dots.
References (57)
- Circulating MicroRNAs Identified in a Genome-Wide Serum MicroRNA Expression Analysis as Noninvasive Biomarkers for Endometriosis via openalex
- Consensus on current management of endometriosis via openalex
- Endometriosis and infertility: pathophysiology and management via openalex
- Genome-wide profiling of long noncoding ribonucleic acid expression patterns in ovarian endometriosis by microarray via openalex
- H19 lncRNA alters stromal cell growth via IGF signaling in the endometrium of women with endometriosis via openalex
- Incidence of Laparoscopically Confirmed Endometriosis by Demographic, Anthropometric, and Lifestyle Factors via openalex
- miR-200c suppresses endometriosis by targeting MALAT1 in vitro and in vivo via openalex
- Plasma MicroRNAs as Novel Biomarkers for Endometriosis and Endometriosis-Associated Ovarian Cancer via openalex
- Progress in understanding the relationship between long noncoding RNA and endometriosis via openalex
- The relationship of endometriosis and ovarian malignancy: a review via openalex
- Treatment of Endometriosis via openalex
- W2014385950 via openalex
- W2015066175 via openalex
- W2051282896 via openalex
- W2053740048 via openalex
- W2068728873 via openalex
- W2070061120 via openalex
- W2079588819 via openalex
- W2087377443 via openalex
- W2089218510 via openalex
- W2094222260 via openalex
- W2095852754 via openalex
- W2106876536 via openalex
- W2107959716 via openalex
- W2108478507 via openalex
- W2109948781 via openalex
- W2116236561 via openalex
- W2128619556 via openalex
- W2166810745 via openalex
- W2166967514 via openalex
- W2198153867 via openalex
- W2316868006 via openalex
- W2322133447 via openalex
- W2323109885 via openalex
- W2341857169 via openalex
- W2420116483 via openalex
- W2466016379 via openalex
- W2525370412 via openalex
- W2561833005 via openalex
- W2581781625 via openalex
- W2753791661 via openalex
- W2908871982 via openalex
- W3008501255 via openalex
- W3013635252 via openalex
- W3032924295 via openalex
- W110908052 via openalex
- W6717532166 via openalex
- W1790847492 via openalex
- W1912917036 via openalex
- W1966654776 via openalex
- W1973445288 via openalex
- W1978967539 via openalex
- W1985901055 via openalex
- W1987592711 via openalex
- W1990532502 via openalex
- W1991932399 via openalex
- W2005664674 via openalex
Cited by (21)
- Identification of long non-coding RNAs BAT5, MALAT1, and UBOX5 in the peripheral blood leukocytes of women with endometriosis before surgery and at 1 month after surgery 2025
- An overview of endometriosis and molecular target-based therapeutic approach 2025
- The roles of chromatin regulatory factors in endometriosis 2024
- Endometrial Receptivity in Women with Endometriosis 2024
- Chromatin modifiers in endometriosis pathogenesis 2024
- MiR-19b-3p inhibits cell viability and proliferation and promotes apoptosis by targeting IGF1 in KGN cells 2023
- A comprehensive overview of exosome lncRNAs: emerging biomarkers and potential therapeutics in endometriosis 2023
- mRNA, lncRNA and Circular RNA Expression Profiles in Granulosa Cells of Infertile Women with Ovarian Endometriosis 2022
- Identification of Functional lncRNAs Associated With Ovarian Endometriosis Based on a ceRNA Network 2021
- The value of long noncoding RNAs for predicting the recurrence of endometriosis 2021
- The Role of Long Non-Coding RNAs in Endometriosis 2021
- The impact of phthalate on reproductive function in women with endometriosis 2021
- LINC01133 Inhibits Invasion and Promotes Proliferation in an Endometriosis Epithelial Cell Line 2021
- RNA sequencing‐based long non‐coding RNA analysis and immunoassay in ovarian endometriosis 2020
- Long noncoding RNAs in endometriosis: Biological functions, expressions, and mechanisms 2020
- Brassica Bioactives Could Ameliorate the Chronic Inflammatory Condition of Endometriosis 2020
- Role of Non-coding RNAs in the Pathogenesis of Endometriosis 2020
- Hypothetical roadmap towards endometriosis: prenatal endocrine-disrupting chemical pollutant exposure, anogenital distance, gut-genital microbiota and subclinical infections 2019
- Progress in understanding the relationship between long noncoding RNA and endometriosis 2019
- A potential role of cyclin-dependent kinase inhibitor 1 (p21/WAF1) in the pathogenesis of endometriosis: Directions for future research 2019
- Scutellarin Suppresses Platelet Aggregation and Stalls Lesional Progression in Mouse With Induced Endometriosis 2018
Source provenance
- europepmc
- last seen: 2026-06-04T01:30:01.192114+00:00
- openalex
- last seen: 2026-06-04T00:00:01.174412+00:00
- pubmed
- last seen: 2026-05-13T22:19:31.300640+00:00
License: CC0
· commercial use OK