1.Silencing RAB27a inhibits proliferation, invasion and adhesion of triple-negative breast cancer cells.
Li WANG ; Zhirui YAN ; Yaoxiong XIA
Journal of Southern Medical University 2023;43(4):560-567
OBJECTIVE:
To investigate the effect of inhibition of RAB27 protein family, which plays a pivotal role in exosome secretion, on biological behaviors of triple-negative breast cancer cells.
METHODS:
Quantitative real-time PCR and Western blotting were used to examine the expressions of RAB27 family and exosome secretion in 3 triple-negative breast cancer cell lines (MDA-MB-231, MDA-MB-468, and Hs578T) and a normal breast epithelial cell line (MCF10A). The effect of small interfering RNA (siRNA)-mediated silencing of RAB27a and RAB27b on exosome secretion in the 3 breast cancer cell lines was detected using Western blotting, and the changes in cell proliferation, invasion and adhesion were evaluated.
RESULTS:
Compared with normal breast epithelial cells, the 3 triple-negative breast cancer cell lines exhibited more active exosome secretion (P < 0.001) and showed significantly higher expressions of RAB27a and RAB27b at both the mRNA and protein levels (P < 0.01). Silencing of RAB27a in the breast cancer cells significantly down-regulated exosome secretion (P < 0.001), while silencing of RAB27b did not significantly affect exosome secretion. The 3 breast cancer cell lines with RAB27a silencing-induced down-regulation of exosome secretion showed obvious inhibition of proliferation, invasion and adhesion (P < 0.01) as compared with the cell lines with RAB27b silencing.
CONCLUSION
RAB27a plays central role in the exosome secretion in triple-negative breast cancer cells, and inhibiting RAB27a can inhibit the proliferation, invasion and adhesion of the cells.
Humans
;
rab GTP-Binding Proteins/metabolism*
;
Triple Negative Breast Neoplasms
;
Cell Line, Tumor
;
rab27 GTP-Binding Proteins/metabolism*
;
RNA, Small Interfering/genetics*
;
Cell Proliferation/genetics*
;
Gene Expression Regulation, Neoplastic
2.Expression of TUBB4B in mouse primary spermatocyte GC-2 cells and its regulatory effect on NF-κB and MAPK signaling pathway.
Tongjia LIU ; Wanlun WANG ; Ting ZHANG ; Shuang LIU ; Yanchao BIAN ; Chuanling ZHANG ; Rui XIAO
Journal of Southern Medical University 2023;43(6):1002-1009
OBJECTIVE:
To explore the interaction between Tubulin beta 4B class IVb (TUBB4B) and Agtpbp1/cytosolic carboxypeptidase- like1 (CCP1) in mouse primary spermatocytes (GC-2 cells) and the role of TUBB4B in regulating the development of GC-2 cells.
METHODS:
Lentiviral vectors were used to infect GC-2 cells to construct TUBB4B knockdown and negative control (NC-KD) cells. The stable cell lines with TUBB4B overexpression (Tubb4b-OE) and the negative control (NC-OE) cells were screened using purinomycin. RT-qPCR and Western blotting were used to verify successful cell modeling and explore the relationship between TUBB4B and CCP1 expressions in GC-2 cells. The effects of TUBB4B silencing and overexpression on the proliferation and cell cycle of GC-2 cells were evaluated using CCK8 assay and flow cytometry. The signaling pathway proteins showing significant changes in response to TUBB4B silencing or overexpression were identified using Western blotting and immunofluorescence assay and then labeled for verification at the cellular level.
RESULTS:
Both TUBB4B silencing and overexpression in GC-2 cells caused consistent changes in the mRNA and protein expressions of CCP1 (P < 0.05). Similarly, TUBB4B expression also showed consistent changes at the mRNA and protein after CCP1 knockdown and restoration (P < 0.05). TUBB4B knockdown and overexpression had no significant effect on proliferation rate or cell cycle of GC-2 cells, but caused significant changes in the key proteins of the nuclear factor kappa-B (NF-κB) signaling pathway (p65 and p-p65) and the mitogen-activated protein kinase (MAPK) signaling pathway (ErK1/2 and p-Erk1/2) (P < 0.05); CCP1 knockdown induced significant changes in PolyE expression in GC-2 cells (P < 0.05).
CONCLUSIONS
TUBB4B and CCP1 interact via a mutual positive regulation mechanism in GC-2 cells. CCP-1 can deglutamize TUBB4B, and the latter is involved in the regulation of NF-κB and MAPK signaling pathways in primary spermatocytes.
Animals
;
Male
;
Mice
;
GTP-Binding Proteins/metabolism*
;
Mitogen-Activated Protein Kinases/metabolism*
;
NF-kappa B/metabolism*
;
RNA, Messenger
;
Serine-Type D-Ala-D-Ala Carboxypeptidase/metabolism*
;
Signal Transduction
;
Spermatocytes
;
Tubulin/genetics*
3.Analysis of the salt-stress responsive element of the promoter of peanut small GTP binding protein gene AhRabG3f.
Guoning DU ; Jie XIANG ; Shunyu LIN ; Xiangyuan KONG ; Xiuling WU ; Xuedong GUAN ; Hong ZHU ; Jingshan WANG ; Lixian QIAO ; Jiongming SUI ; Chunmei ZHAO
Chinese Journal of Biotechnology 2022;38(8):2989-2998
To study the molecular mechanism of salt stress response of peanut small GTP binding protein gene AhRabG3f, a 1 914 bp promoter fragment upstream of the start codon of AhRabG3f gene (3f-P) from peanut was cloned. Subsequently, five truncated fragments (3f-P1-3f-P5) with lengths of 1 729, 1 379, 666, 510 and 179 bp were obtained through deletion at the 5' end, respectively. Plant expression vectors where these six promoter fragments were fused with the gus gene were constructed and transformed into tobacco by Agrobacterium-mediated method, respectively. GUS expression in transgenic tobacco and activity analysis were conducted. The gus gene expression can be detected in the transgenic tobacco harboring each promoter segment, among which the driving activity of the full-length promoter 3f-P was the weakest, while the driving activity of the promoter segment 3f-P3 was the strongest. Upon exposure of the transgenic tobacco to salt stress, the GUS activity driven by 3f-P, 3f-P1, 3f-P2 and 3f-P3 was 3.3, 1.2, 1.9 and 1.2 times compared to that of the transgenic plants without salt treatment. This suggests that the AhRabG3f promoter was salt-inducible and there might be positive regulatory elements between 3f-P and 3f-P3 in response to salt stress. The results of GUS activity driven by promoter fragments after salt treatment showed that elements included MYB and GT1 between 1 930 bp and 1 745 bp. Moreover, a TC-rich repeat between 682 bp and 526 bp might be positive cis-elements responsible for salt stress, and an MYC element between 1 395 bp and 682 bp might be a negative cis-element responsible for salt stress. This study may facilitate using the induced promoter to regulate the salt resistance of peanut.
Arachis/genetics*
;
Fabaceae/genetics*
;
GTP-Binding Proteins/metabolism*
;
Gene Expression Regulation, Plant
;
Glucuronidase/metabolism*
;
Plant Proteins/metabolism*
;
Plants, Genetically Modified/genetics*
;
Salt Stress
;
Stress, Physiological/genetics*
;
Tobacco/genetics*
4.New effect of G-protein coupled receptors on blood pressure regulation.
Hong-Xia DU ; Guang-Xu XIAO ; Xiao-Li DU ; Yan ZHU
China Journal of Chinese Materia Medica 2021;46(1):6-14
Hypertension is a clinical syndrome characterized by elevated systemic arterial blood pressure, which may be accompanied by functional or organic damage of heart, brain, kidney and other organs. The pathogenesis and development of hypertension are affected by genetic, environmental, epigenetic, intestinal microbiota and other factors. They are the result of multiple factors that promote the change of blood pressure level and vascular resistance. G protein coupled receptors(GPCRs) are the largest and most diverse superfamily of transmembrane receptors that transmit signals across cell membranes and mediate a large number of cellular responses required by human physiology. A variety of GPCRs are involved in the control of blood pressure and the maintenance of normal function of cardiovascular system. Hypertension contributes to the damages of heart, brain, kidney, intestine and other organs. Many GPCRs are expressed in various organs to regulate blood pressure. Although many GPCRs have been used as therapeutic targets for hypertension, their efficacy has not been fully studied. The purpose of this paper is to elucidate the role of GPCRs in blood pressure regulation and its distribution in target organs. The relationship between GPCRs related to intestinal microorganisms and blood pressure is emphasized. It is proposed that traditional Chinese medicine may be a new way to treat hypertension by regulating the related GPCRs via intestinal microbial metabolites.
Blood Pressure
;
GTP-Binding Proteins
;
Gastrointestinal Microbiome
;
Humans
;
Hypertension/genetics*
;
Receptors, G-Protein-Coupled/metabolism*
5.Circulating-free DNA Mutation Associated with Response of Targeted Therapy in Human Epidermal Growth Factor Receptor 2-positive Metastatic Breast Cancer.
Qing YE ; Fan QI ; Li BIAN ; Shao-Hua ZHANG ; Tao WANG ; Ze-Fei JIANG
Chinese Medical Journal 2017;130(5):522-529
BACKGROUNDThe addition of anti-human epidermal growth factor receptor 2 (HER2)-targeted drugs, such as trastuzumab, lapatinib, and trastuzumab emtansine (T-DM1), to chemotherapy significantly improved prognosis of HER2-positive breast cancer patients. However, it was confused that metastatic patients vary in the response of targeted drug. Therefore, methods of accurately predicting drug response were really needed. To overcome the spatial and temporal limitations of biopsies, we aimed to develop a more sensitive and less invasive method of detecting mutations associated with anti-HER2 therapeutic response through circulating-free DNA (cfDNA).
METHODSFrom March 6, 2014 to December 10, 2014, 24 plasma samples from 20 patients with HER2-positive metastatic breast cancer who received systemic therapy were eligible. We used a panel for detection of hot-spot mutations from 50 oncogenes and tumor suppressor genes, and then used targeted next-generation sequencing (NGS) to identify somatic mutation of these samples in those 50 genes. Samples taken before their first trastuzumab administration and subsequently proven with clinical benefit were grouped into sensitive group. The others were collected after disease progression of the trastuzumab-based therapy and were grouped into the resistant group.
RESULTSA total of 486 single-nucleotide variants from 46 genes were detected. Of these 46 genes, phosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit alpha (PIK3CA), proto-oncogene c-Kit (KIT), and tumor protein p53 (TP53) were the most common mutated genes. Seven genes, including epidermal growth factor receptor (EGFR), G protein subunit alpha S (GNAS), HRas proto-oncogene (HRAS), mutL homolog 1 (MLH1), cadherin 1 (CDH1), neuroblastoma RAS viral oncogene homolog (NRAS), and NOTCH1, that only occurred m utations in the resistant group were associated with the resistance of targeted therapy. In addition, we detected a HER2 S855I mutation in two patients who had persistent benefits from anti-HER2 therapy.
CONCLUSIONTargeted NGS of cfDNA has potential clinical utility to detect biomarkers from HER2-targeted therapies.
Adolescent ; Adult ; Aged ; Biomarkers, Tumor ; genetics ; Breast Neoplasms ; genetics ; metabolism ; Cadherins ; genetics ; Chromogranins ; genetics ; Class I Phosphatidylinositol 3-Kinases ; Drug Resistance, Neoplasm ; genetics ; Female ; GTP-Binding Protein alpha Subunits, Gs ; genetics ; Humans ; Male ; Middle Aged ; Mutation ; genetics ; Phosphatidylinositol 3-Kinases ; genetics ; Proto-Oncogene Proteins c-kit ; genetics ; Receptor, ErbB-2 ; metabolism ; Receptor, Notch1 ; genetics ; Tumor Suppressor Protein p53 ; genetics ; Young Adult
6.Role of Rheb in Human Acute Myeloid Leukemia.
Xiao-Min WANG ; Qiao-Zhu XU ; Ya-Nan GAO ; Juan GAO ; Ming-Hao LI ; Wan-Zhu YANG ; Jiang-Xiang WANG ; Wei-Ping YUAN
Journal of Experimental Hematology 2016;24(3):662-666
OBJECTIVETo investigate the role of Rheb (mTOR activator) in AML development by measuring Rheb expression in bone marrow of adult AML patients and in AML cell line HL-60.
METHODSReal-time PCR assay was used to measure the Rheb mRNA expression in 27 AML patients and 29 ITP patients as control. The relationship between Rheb mRNA expression and age, AML subtype, fusion gene, splenomegaly, hepatomegaly and survival of AML patients was analyzed and compared. In addition, HL-60 cell line over-expressing Rheb was established, and the HL-60 cells and HL-60 cells with overexpression of Rheb were treated with Ara-C of different concentrations, the proliferation level was detected by CCK-8 method, and the IC50 was calculated.
RESULTSThe mRNA level of Rheb in AML patients was similar to that in ITP patients (control). Interestingly, higher expression of Rheb was associated with better survival and was sensitive to Ara-C treatment. However, the expression level of Rheb was not associated with age, AML subtype, fusion gene, and hepatomegaly of patients. Lower expression level of Rheb was associated with splenomegaly. In vitro analysis of HL-60 line indicated that overexpression of Rheb could increased the cell sensitivity to Ara-C treatment (IC50=0.54 µmol/L) and caused HL-60 cell apoptosis.
CONCLUSIONThe lower Rheb expression is a poor prognostic indicator for AML patients, which is associated with AML splenomegaly, the patients and HL-60 cells with low expression of Rheb are insensitive to Ara-C treatment.
Adult ; Apoptosis ; Bone Marrow ; metabolism ; Cytarabine ; pharmacology ; HL-60 Cells ; Humans ; Leukemia, Myeloid, Acute ; genetics ; metabolism ; pathology ; Monomeric GTP-Binding Proteins ; genetics ; metabolism ; Neuropeptides ; genetics ; metabolism ; RNA, Messenger ; genetics ; metabolism ; Ras Homolog Enriched in Brain Protein ; Real-Time Polymerase Chain Reaction ; Spleen ; pathology
7.Rab1A mediates proinsulin to insulin conversion in β-cells by maintaining Golgi stability through interactions with golgin-84.
Xiaojing LIU ; Zhenguo WANG ; Ying YANG ; Qingrun LI ; Rong ZENG ; Jiuhong KANG ; Jiarui WU
Protein & Cell 2016;7(9):692-696
Animals
;
Autoantigens
;
genetics
;
metabolism
;
Cell Line, Tumor
;
Golgi Apparatus
;
genetics
;
metabolism
;
Golgi Matrix Proteins
;
Insulin-Secreting Cells
;
metabolism
;
Membrane Proteins
;
genetics
;
metabolism
;
Proinsulin
;
genetics
;
metabolism
;
Rats
;
rab1 GTP-Binding Proteins
;
genetics
;
metabolism
8.Role of inhibition of osteogenesis function by Sema4D/Plexin-B1 signaling pathway in skeletal fluorosis in vitro.
Xiao-li LIU ; Jing SONG ; Ke-jian LIU ; Wen-peng WANG ; Chang XU ; Yu-zeng ZHANG ; Yun LIU
Journal of Huazhong University of Science and Technology (Medical Sciences) 2015;35(5):712-715
Skeletal fluorosis is a chronically metabolic bone disease with extensive hyperostosis osteosclerosis caused by long time exposure to fluoride. Skeletal fluorosis brings about a series of abnormal changes of the extremity, such as joint pain, joint stiffness, bone deformity, etc. Differentiation and maturation of osteoblasts were regulated by osteoclasts via Sema4D/Plexin-B1 signaling pathway. Furthermore, the differentiation and maturation of osteoclasts are conducted by osteoblasts via RANKL/RANK/OPG pathway. Both of these processes form a feedback circuit which is a key link in skeletal fluorosis. In this study, an osteoblast-osteoclast co-culture model in vitro was developed to illustrate the mechanism of skeletal fluorosis. With the increase of fluoride concentration, the expression level of Sema4D was decreased and TGF-β1 was increased continuously. OPG/RANKL mRNA level, however, increased gradually. On the basis of that, the inhibition of Sema4D/Plexin-B1/RhoA/ROCK signaling pathway caused by fluoride promoted the level of TGF-β1 and activated the proliferation of osteoblasts. In addition, osteroprotegerin (OPG) secreted by osteoblasts was up-regulated by fluoride. The competitive combination of OPG and RANKL was strengthened and the combination of RANKL and RANK was hindered. And then the differentiation and maturation of osteoclasts were inhibited, and bone absorption was weakened, leading to skeletal fluorosis.
Animals
;
Antigens, CD
;
genetics
;
metabolism
;
Cell Proliferation
;
drug effects
;
Feedback, Physiological
;
Fetus
;
Fluorides
;
pharmacology
;
GTPase-Activating Proteins
;
genetics
;
metabolism
;
Gene Expression Regulation, Developmental
;
Osteoblasts
;
drug effects
;
metabolism
;
pathology
;
Osteoclasts
;
drug effects
;
metabolism
;
pathology
;
Osteogenesis
;
drug effects
;
genetics
;
Osteoprotegerin
;
genetics
;
metabolism
;
RANK Ligand
;
genetics
;
metabolism
;
RNA, Messenger
;
genetics
;
metabolism
;
Rats
;
Receptor Activator of Nuclear Factor-kappa B
;
genetics
;
metabolism
;
Receptors, Cell Surface
;
genetics
;
metabolism
;
Semaphorins
;
genetics
;
metabolism
;
Signal Transduction
;
Transforming Growth Factor beta1
;
genetics
;
metabolism
;
rho-Associated Kinases
;
genetics
;
metabolism
;
rhoA GTP-Binding Protein
;
genetics
;
metabolism
9.The pleckstrin homology domain of phospholipase D1 accelerates EGFR endocytosis by increasing the expression of the Rab5 effector, rabaptin-5.
Mi Hee PARK ; Kang Yell CHOI ; Do Sik MIN
Experimental & Molecular Medicine 2015;47(12):e200-
Endocytosis is differentially regulated by hypoxia-inducible factor-1alpha (HIF-1alpha) and phospholipase D (PLD). However, the relationship between HIF-1alpha and PLD in endocytosis is unknown. HIF-1alpha is degraded through the prolyl hydroxylase (PHD)/von Hippel-Lindau (VHL) ubiquitination pathway in an oxygen-dependent manner. Here, we show that PLD1 recovers the decrease in epidermal growth factor receptor (EGFR) endocytosis induced by HIF-1alpha independent of lipase activity via the Rab5-mediated endosome fusion pathway. EGF-induced interaction of PLD1 with HIF-1alpha, PHD and VHL may contribute to EGFR endocytosis. The pleckstrin homology domain (PH) of PLD1 itself promotes degradation of HIF-1alpha, then accelerates EGFR endocytosis via upregulation of rabaptin-5 and suppresses tumor progression. These findings reveal a novel role of the PLD1-PH domain as a positive regulator of endocytosis and provide a link between PLD1 and HIF-1alpha in the EGFR endocytosis pathway.
Animals
;
Blood Proteins/chemistry/*metabolism
;
Endocytosis
;
Female
;
HEK293 Cells
;
HT29 Cells
;
Humans
;
Hypoxia-Inducible Factor 1, alpha Subunit/metabolism
;
Mice, Nude
;
Neoplasms/genetics/metabolism/pathology
;
Phospholipase D/chemistry/*metabolism
;
Phosphoproteins/chemistry/*metabolism
;
Protein Structure, Tertiary
;
Receptor, Epidermal Growth Factor/*metabolism
;
Signal Transduction
;
*Up-Regulation
;
Vesicular Transport Proteins/*genetics/metabolism
;
rab5 GTP-Binding Proteins/*metabolism
10.Targeted disruption of Rab10 causes early embryonic lethality.
Pingping LV ; Yi SHENG ; Zhenao ZHAO ; Wei ZHAO ; Lusheng GU ; Tao XU ; Eli SONG
Protein & Cell 2015;6(6):463-467
Animals
;
Cell Nucleus Size
;
genetics
;
Cell Proliferation
;
genetics
;
Embryo Loss
;
genetics
;
pathology
;
Embryo, Mammalian
;
metabolism
;
pathology
;
Embryonic Stem Cells
;
cytology
;
Endoplasmic Reticulum
;
genetics
;
Homologous Recombination
;
Mice
;
rab GTP-Binding Proteins
;
deficiency
;
genetics
;
metabolism

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