Javascript must be enabled to continue!
miR-301a Deficiency Attenuates the Macrophage Migration and Phagocytosis through YY1/CXCR4 Pathway
View through CrossRef
(1) Background: the miR-301a is well known involving the proliferation and migration of tumor cells. However, the role of miR-301a in the migration and phagocytosis of macrophages is still unclear. (2) Methods: sciatic nerve injury, liver injury models, as well as primary macrophage cultures were prepared from the miR-301a knockout (KO) and wild type (WT) mice to assess the macrophage’s migration and phagocytosis capabilities. Targetscan database analysis, Western blotting, siRNA transfection, and CXCR4 inhibition or activation were performed to reveal miR301a’s potential mechanism. (3) Results: the macrophage’s migration and phagocytosis were significantly attenuated by the miR-301a KO both in vivo and in vitro. MiR-301a can target Yin-Yang 1 (YY1), and miR-301a KO resulted in YY1 up-regulation and CXCR4 (YY1′s down-stream molecule) down-regulation. siYY1 increased the expression of CXCR4 and enhanced migration and phagocytosis in KO macrophages. Meanwhile, a CXCR4 inhibitor or agonist could attenuate or accelerate, respectively, the macrophage migration and phagocytosis. (4) Conclusions: current findings indicated that miR-301a plays important roles in a macrophage’s capabilities of migration and phagocytosis through the YY1/CXCR4 pathway. Hence, miR-301a might be a promising therapeutic candidate for inflammatory diseases by adjusting macrophage bio-functions.
Title: miR-301a Deficiency Attenuates the Macrophage Migration and Phagocytosis through YY1/CXCR4 Pathway
Description:
(1) Background: the miR-301a is well known involving the proliferation and migration of tumor cells.
However, the role of miR-301a in the migration and phagocytosis of macrophages is still unclear.
(2) Methods: sciatic nerve injury, liver injury models, as well as primary macrophage cultures were prepared from the miR-301a knockout (KO) and wild type (WT) mice to assess the macrophage’s migration and phagocytosis capabilities.
Targetscan database analysis, Western blotting, siRNA transfection, and CXCR4 inhibition or activation were performed to reveal miR301a’s potential mechanism.
(3) Results: the macrophage’s migration and phagocytosis were significantly attenuated by the miR-301a KO both in vivo and in vitro.
MiR-301a can target Yin-Yang 1 (YY1), and miR-301a KO resulted in YY1 up-regulation and CXCR4 (YY1′s down-stream molecule) down-regulation.
siYY1 increased the expression of CXCR4 and enhanced migration and phagocytosis in KO macrophages.
Meanwhile, a CXCR4 inhibitor or agonist could attenuate or accelerate, respectively, the macrophage migration and phagocytosis.
(4) Conclusions: current findings indicated that miR-301a plays important roles in a macrophage’s capabilities of migration and phagocytosis through the YY1/CXCR4 pathway.
Hence, miR-301a might be a promising therapeutic candidate for inflammatory diseases by adjusting macrophage bio-functions.
Related Results
A Pan-Cancer Analysis of the Tumorigenic Role of Yin-Yang1 (YY1) in Human Tumors
A Pan-Cancer Analysis of the Tumorigenic Role of Yin-Yang1 (YY1) in Human Tumors
Abstract
Background: Yin-yang1 (YY1) is a nuclear transcription factor possessing dual transcriptional activity, which has different expression in a variety of tumor tissue...
β-elemene suppresses Warburg effect in NCI-H1650 non-small-cell lung cancer cells by regulating the miR-301a-3p/AMPKα axis
β-elemene suppresses Warburg effect in NCI-H1650 non-small-cell lung cancer cells by regulating the miR-301a-3p/AMPKα axis
Abstract
β-elemene has been evidenced to suppress the development of numerous cancers including lung cancer. Previous research has found that in A549 cells, β-elemen...
GW24-e2497 Circulating MicroRNAs as Potential Biomarkers of Coagulation Dysfunction in Patients with Vulnerable Coronary Artery Disease
GW24-e2497 Circulating MicroRNAs as Potential Biomarkers of Coagulation Dysfunction in Patients with Vulnerable Coronary Artery Disease
Objectives
The activation of coagulation and fibrinolysis plays a critical role in the incidence of coronary events. MicroRNAs (miRNAs) are small non-coding ribon...
Expression of microRNAs, miR‐21, miR‐31, miR‐122, miR‐145, miR‐146a, miR‐200c, miR‐221, miR‐222, and miR‐223 in patients with hepatocellular carcinoma or intrahepatic cholangiocarcinoma and its prognostic significance
Expression of microRNAs, miR‐21, miR‐31, miR‐122, miR‐145, miR‐146a, miR‐200c, miR‐221, miR‐222, and miR‐223 in patients with hepatocellular carcinoma or intrahepatic cholangiocarcinoma and its prognostic significance
AbstractMicroRNAs are a class of non‐coding molecules found to regulate a variety of cellular functions in health and disease. Dysregulation of microRNAs is involved in liver disea...
Deranged MicroRNA 16-2 Expression Contributes to Erythropoiesis in Polycythemia Vera.
Deranged MicroRNA 16-2 Expression Contributes to Erythropoiesis in Polycythemia Vera.
Abstract
Abstract 3896
Poster Board III-832
We previously reported the finding of significantly raised levels of mature microRNA 16 (mi...
CXCR4 expression in feline mammary carcinoma cells: evidence of a proliferative role for the SDF-1/CXCR4 axis
CXCR4 expression in feline mammary carcinoma cells: evidence of a proliferative role for the SDF-1/CXCR4 axis
AbstractBackgroundMammary tumours frequently develop in female domestic cats being highly malignant in a large percentage of cases. Chemokines regulate many physiological and patho...
MicroRNAs Expression Profile in Young Patients with Acute Myocardial Infarction
MicroRNAs Expression Profile in Young Patients with Acute Myocardial Infarction
Introduction: Acute myocardial infarction (AMI) is a severe coronary heart disease. Targeted miRNAs studies implicated two main pathways in the regulation of AMI namely pro-apopt...
Abstract 2027: Proteomic analysis identifies pathways regulated by miR-34a
Abstract 2027: Proteomic analysis identifies pathways regulated by miR-34a
Abstract
MicroRNA 34a (miR-34a) is an important tumor suppressor gene and has been identified as a miRNA component of the p53 network. To better understand the biolo...

