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1.
Front Genet ; 13: 919857, 2022.
Article in English | MEDLINE | ID: mdl-36118862

ABSTRACT

Long non-coding RNAs (lncRNAs) can influence the proliferation, autophagy, and apoptosis of non-small cell lung cancer (NSCLC). LncRNAs also emerge as valuable prognostic factors for NSCLC patients. Consequently, we set out to discover more autophagy-associated lncRNAs. We acquired autophagy-associated genes and information on lncRNAs from The Cancer Genome Atlas database (TCGA), and the Human Autophagy Database (HADb). Then, the prognostic prediction signature was constructed through using co-expression and Cox regression analysis. The signature was constructed including 7 autophagy-associated lncRNAs (ABALON, NKILA, LINC00941, AL161431.1, AL691432.2, AC020765.2, MMP2-AS1). After that, we used univariate and multivariate Cox regression analysis to calculate the risk score. The survival analysis and ROC curve analysis confirmed good performances of the signature. GSEA indicated that the high-risk group was principally enriched in the adherens junction pathway. In addition, biological experiments showed that ABALON promoted the proliferation, metastasis and autophagy levels of NSCLC cells. These findings demonstrate that the risk signature consisting of 7 autophagy-associated lncRNAs accurately predicts the prognosis of NSCLC patients and should be investigated for potential therapeutic targets in clinic.

2.
Ann Hematol ; 93(11): 1845-52, 2014 Nov.
Article in English | MEDLINE | ID: mdl-25015051

ABSTRACT

Numbers of observational studies suggest that the JAK2 46/1 (GGCC) haplotype may increase the risk of myeloproliferative neoplasms (MPNs) and splanchnic vein thrombosis (SVT), but the results remain controversial. We aimed to examine the association between the JAK2 46/1 haplotype and risk of MPNs and SVT by conducting a meta-analysis. PubMed, EMBASE, Cochrane Library, CBM, and CNKI databases were searched to identify eligible studies without restrictions and by reviewing reference lists of obtained articles. Both fixed and random-effects models were used to calculate the summary risk estimates. We identified 26 observational studies of the JAK2 46/1 haplotype and risk of MPNs and SVT involving 8,561 cases and 7,434 participants. In the overall analysis, it was found that the JAK2 46/1 haplotype significantly elevated the risk of MPNs (rs10974944: C vs T: odds ratio (OR) = 2.19, 95 % confidence interval (CI) = 1.86-2.57, P < 0.0001; CC vs TT: OR = 4.63, 95 % CI = 3.32-6.47, P < 0.0001; CT vs TT: OR = 2.49, 95 % CI = 2.11-2.95, P < 0.0001; (CC + CT) vs TT: OR = 2.92, 95 % CI = 2.51-3.39, P < 0.0001; rs12343867: C vs T: OR = 1.88, 95 % CI = 1.59-2.22, P < 0.0001; CC vs TT: OR = 3.16, 95 %CI = 2.14-4.65, P < 0.0001; CT vs TT: OR = 2.04, 95 % CI = 1.51-2.74, P < 0.0001; (CC + CT) vs TT: OR = 2.25, 95 % CI = 1.73-2.95, P < 0.0001) and SVT (C vs T: OR = 1.27, 95 % CI = 1.06-1.52, P = 0.011; CC vs TT: OR = 2.33, 95 % CI = 1.42-3.81, P = 0.001; (CC + CT) vs TT: OR = 1.25, 95 % CI = 1.02-1.53, P = 0.034). There was no evidence of a significant association between the rs12343867 and the risk of SVT in the genetic model (CT vs TT: OR = 1.01, 95 % CI = 0.80-1.29, P = 0.906). This meta-analysis provides new evidence supporting the conclusion that the JAK2 46/1 haplotype enrichment is significantly associated with the development of MPNs and SVT in these patients.


Subject(s)
Bone Marrow Neoplasms/genetics , Haplotypes/genetics , Janus Kinase 2/genetics , Splanchnic Circulation/physiology , Venous Thrombosis/genetics , Bone Marrow Neoplasms/diagnosis , Bone Marrow Neoplasms/enzymology , Humans , Janus Kinase 2/metabolism , Myeloproliferative Disorders/diagnosis , Myeloproliferative Disorders/enzymology , Myeloproliferative Disorders/genetics , Observational Studies as Topic/methods , Venous Thrombosis/diagnosis , Venous Thrombosis/enzymology
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