1.Curcumin Inhibits Proliferation of Renal Cell Carcinoma in vitro and in vivo by Regulating miR-148/ADAMTS18 through Suppressing Autophagy.
Ben XU ; Chang-Wei YUAN ; Jia-En ZHANG
Chinese journal of integrative medicine 2023;29(8):699-706
OBJECTIVE:
To explore the effect of curcumin on the proliferation of renal cell carcinoma and analyze its regulation mechanism.
METHODS:
In RCC cell lines of A498 and 786-O, the effects of curcumin (2.5, 5, 10 µ mo/L) on the proliferation were analyzed by Annexin V+PI staining. Besides, A498 was inoculated into nude mice to establish tumorigenic models, and the model mice were treated with different concentrations of curcumin (100, 200, and 400 mg/kg), once daily for 30 days. Then the tumor diameter was measured, the tumor cells were observed by hematoxylin-eosin staining, and the protein expressions of miR-148 and ADAMTS18 were detected by immunohistochemistry. In vitro, after transfection of miR-148 mimics, miR-148 inhibitor or si-ADAMTS18 in cell lines, the expression of ADAMTS18 was examined by Western blotting and the cell survival rate was analyzed using MTT. Subsequently, Western blot analysis was again used to examine the autophagy phenomenon by measuring the relative expression level of LC3-II/LC3-I; autophagy-associated genes, including those of Beclin-1 and ATG5, were also examined when miR-148 was silenced in both cell lines with curcumin treatment.
RESULTS:
Curcumin could inhibit the proliferation of RCC in cell lines and nude mice. The expression of miR-148 and ADAMTS18 was upregulated after curcumin treatment both in vitro and in vivo (P<0.05). The cell survival rate was dramatically declined upon miR-148 or ADAMTS18 upregulated. However, si-ADAMTS18 treatment or miR-148 inhibitor reversed these results, that is, both of them promoted the cell survival rate.
CONCLUSION
Curcumin can inhibit the proliferation of renal cell carcinoma by regulating the miR-148/ ADAMTS18 axis through the suppression of autophagy in vitro and in vivo. There may exist a positive feedback loop between miR-148 and ADAMTS18 gene in RCC.
Animals
;
Mice
;
Carcinoma, Renal Cell/metabolism*
;
Curcumin/therapeutic use*
;
MicroRNAs/metabolism*
;
Mice, Nude
;
Cell Line, Tumor
;
Kidney Neoplasms/metabolism*
;
Autophagy
;
Cell Proliferation
;
Gene Expression Regulation, Neoplastic
;
ADAMTS Proteins/metabolism*
2.Aldolase B attenuates clear cell renal cell carcinoma progression by inhibiting CtBP2.
Mingyue TAN ; Qi PAN ; Qi WU ; Jianfa LI ; Jun WANG
Frontiers of Medicine 2023;17(3):503-517
Aldolase B (ALDOB), a glycolytic enzyme, is uniformly depleted in clear cell renal cell carcinoma (ccRCC) tissues. We previously showed that ALDOB inhibited proliferation through a mechanism independent of its enzymatic activity in ccRCC, but the mechanism was not unequivocally identified. We showed that the corepressor C-terminal-binding protein 2 (CtBP2) is a novel ALDOB-interacting protein in ccRCC. The CtBP2-to-ALDOB expression ratio in clinical samples was correlated with the expression of CtBP2 target genes and was associated with shorter survival. ALDOB inhibited CtBP2-mediated repression of multiple cell cycle inhibitor, proapoptotic, and epithelial marker genes. Furthermore, ALDOB overexpression decreased the proliferation and migration of ccRCC cells in an ALDOB-CtBP2 interaction-dependent manner. Mechanistically, our findings showed that ALDOB recruited acireductone dioxygenase 1, which catalyzes the synthesis of an endogenous inhibitor of CtBP2, 4-methylthio 2-oxobutyric acid. ALDOB functions as a scaffold to bring acireductone dioxygenase and CtBP2 in close proximity to potentiate acireductone dioxygenase-mediated inhibition of CtBP2, and this scaffolding effect was independent of ALDOB enzymatic activity. Moreover, increased ALDOB expression inhibited tumor growth in a xenograft model and decreased lung metastasis in vivo. Our findings reveal that ALDOB is a negative regulator of CtBP2 and inhibits tumor growth and metastasis in ccRCC.
Humans
;
Carcinoma, Renal Cell/genetics*
;
Fructose-Bisphosphate Aldolase/metabolism*
;
Co-Repressor Proteins/metabolism*
;
Transcription Factors/genetics*
;
Kidney Neoplasms/genetics*
;
Cell Line, Tumor
;
Cell Proliferation/genetics*
;
Gene Expression Regulation, Neoplastic
3.Read-through circular RNA rt-circ-HS promotes hypoxia inducible factor 1α expression and renal carcinoma cell proliferation, migration and invasiveness.
Yun Yi XU ; Zheng Zheng SU ; Lin Mao ZHENG ; Meng Ni ZHANG ; Jun Ya TAN ; Ya Lan YANG ; Meng Xin ZHANG ; Miao XU ; Ni CHEN ; Xue Qin CHEN ; Qiao ZHOU
Journal of Peking University(Health Sciences) 2023;55(2):217-227
OBJECTIVE:
To identify and characterize read-through RNAs and read-through circular RNAs (rt-circ-HS) derived from transcriptional read-through hypoxia inducible factor 1α (HIF1α) and small nuclear RNA activating complex polypeptide 1 (SNAPC1) the two adjacent genes located on chromosome 14q23, in renal carcinoma cells and renal carcinoma tissues, and to study the effects of rt-circ-HS on biological behavior of renal carcinoma cells and on regulation of HIF1α.
METHODS:
Reverse transcription-polymerase chain reaction (RT-PCR) and Sanger sequencing were used to examine expression of read-through RNAs HIF1α-SNAPC1 and rt-circ-HS in different tumor cells. Tissue microarrays of 437 different types of renal cell carcinoma (RCC) were constructed, and chromogenic in situ hybridization (ISH) was used to investigate expression of rt-circ-HS in different RCC types. Small interference RNA (siRNA) and artificial overexpression plasmids were designed to examine the effects of rt-circ-HS on 786-O and A498 renal carcinoma cell proliferation, migration and invasiveness by cell counting kit 8 (CCK8), EdU incorporation and Transwell cell migration and invasion assays. RT-PCR and Western blot were used to exa-mine expression of HIF1α and SNAPC1 RNA and proteins after interference of rt-circ-HS with siRNA, respectively. The binding of rt-circ-HS with microRNA 539 (miR-539), and miR-539 with HIF1α 3' untranslated region (3' UTR), and the effects of these interactions were investigated by dual luciferase reporter gene assays.
RESULTS:
We discovered a novel 1 144 nt rt-circ-HS, which was derived from read-through RNA HIF1α-SNAPC1 and consisted of HIF1α exon 2-6 and SNAPC1 exon 2-4. Expression of rt-circ-HS was significantly upregulated in 786-O renal carcinoma cells. ISH showed that the overall positive expression rate of rt-circ-HS in RCC tissue samples was 67.5% (295/437), and the expression was different in different types of RCCs. Mechanistically, rt-circ-HS promoted renal carcinoma cell proliferation, migration and invasiveness by functioning as a competitive endogenous inhibitor of miR-539, which we found to be a potent post-transcriptional suppressor of HIF1α, thus promoting expression of HIF1α.
CONCLUSION
The novel rt-circ-HS is highly expressed in different types of RCCs and acts as a competitive endogenous inhibitor of miR-539 to promote expression of its parental gene HIF1α and thus the proliferation, migration and invasion of renal cancer cells.
Humans
;
Carcinoma, Renal Cell/pathology*
;
Cell Proliferation
;
Hypoxia
;
Kidney Neoplasms
;
MicroRNAs/genetics*
;
Neoplasm Invasiveness/genetics*
;
RNA, Circular/metabolism*
;
RNA, Small Interfering
;
Hypoxia-Inducible Factor 1, alpha Subunit/genetics*
4.Expression of GPNMB in renal eosinophilic tumors and its value in differential diagnosis.
Ya WANG ; Meng Yue HOU ; Yao FU ; Kui MENG ; Hong Yan WU ; Jin CHEN ; Yue Mei XU ; Jiong SHI ; Xiang Shan FAN
Chinese Journal of Pathology 2023;52(4):358-363
Objective: To investigate the expression of glycoprotein non metastatic melanoma protein B (GPNMB) in renal eosinophilic tumors and to compare the value of GPNMB with CK20, CK7 and CD117 in the differential diagnosis of renal eosinophilic tumors. Methods: Traditional renal tumor eosinophil subtypes, including 22 cases of renal clear cell carcinoma eosinophil subtype (e-ccRCC), 19 cases of renal papillary cell carcinoma eosinophil subtype (e-papRCC), 17 cases of renal chromophobe cell carcinoma eosinophil subtype (e-chRCC), 12 cases of renal oncocytoma (RO) and emerging renal tumor types with eosinophil characteristics [3 cases of eosinophilic solid cystic renal cell carcinoma (ESC RCC), 3 cases of renal low-grade eosinophil tumor (LOT), 4 cases of fumarate hydratase-deficient renal cell carcinoma (FH-dRCC) and 5 cases of renal epithelioid angiomyolipoma (E-AML)], were collected at the Affiliated Drum Tower Hospital of Nanjing University Medical School from January 2017 to March 2022. The expression of GPNMB, CK20, CK7 and CD117 was detected by immunohistochemistry and statistically analyzed. Results: GPNMB was expressed in all emerging renal tumor types with eosinophil characteristics (ESC RCC, LOT, FH-dRCC) and E-AML, while the expression rates in traditional renal eosinophil subtypes e-papRCC, e-chRCC, e-ccRCC and RO were very low or zero (1/19, 1/17, 0/22 and 0/12, respectively); the expression rate of CK7 in LOT (3/3), e-chRCC (15/17), e-ccRCC (4/22), e-papRCC (2/19), ESC RCC (0/3), RO (4/12), E-AML(1/5), and FH-dRCC (2/4) variedly; the expression of CK20 was different in ESC RCC (3/3), LOT(3/3), e-chRCC(1/17), RO(9/12), e-papRCC(4/19), FH-dRCC(1/4), e-ccRCC(0/22) and E-AML(0/5), and so did that of CD117 in e-ccRCC(2/22), e-papRCC(1/19), e-chRCC(16/17), RO(10/12), ESC RCC(0/3), LOT(1/3), E-AML(2/5) and FH-dRCC(1/4). GPNMB had 100% sensitivity and 97.1% specificity in distinguishing E-AML and emerging renal tumor types (such as ESC RCC, LOT, FH-dRCC) from traditional renal tumor types (such as e-ccRCC, e-papRCC, e-chRCC, RO),respectively. Compared with CK7, CK20 and CD117 antibodies, GPNMB was more effective in the differential diagnosis (P<0.05). Conclusion: As a new renal tumor marker, GPNMB can effectively distinguish E-AML and emerging renal tumor types with eosinophil characteristics such as ESC RCC, LOT, FH-dRCC from traditional renal tumor eosinophil subtypes such as e-ccRCC, e-papRCC, e-chRCC and RO, which is helpful for the differential diagnosis of renal eosinophilic tumors.
Humans
;
Kidney Neoplasms/pathology*
;
Carcinoma, Renal Cell/pathology*
;
Diagnosis, Differential
;
Angiomyolipoma/diagnosis*
;
Biomarkers, Tumor/metabolism*
;
Leukemia, Myeloid, Acute/diagnosis*
;
Membrane Glycoproteins
5.Mechanism of nuclear protein 1 in the resistance to axitinib in clear cell renal cell carcinoma.
Yun Chong LIU ; Zong Long WU ; Li Yuan GE ; Tan DU ; Ya Qian WU ; Yi Meng SONG ; Cheng LIU ; Lu Lin MA
Journal of Peking University(Health Sciences) 2023;55(5):781-792
OBJECTIVE:
To explore the potential mechanism of resistance to axitinib in clear cell renal cell carcinoma (ccRCC), with a view to expanding the understanding of axitinib resistance, facilitating the design of more specific treatment options, and improving the treatment effectiveness and survival prognosis of patients.
METHODS:
By exploring the half maximum inhibitory concentration (IC50) of axitinib on ccRCC cell lines 786-O and Caki-1, cell lines resistant to axitinib were constructed by repeatedly stimulated with axitinib at this concentration for 30 cycles in vitro. Cell lines that were not treated by axitinib were sensitive cell lines. The phenotypic differences of cell proliferation and apoptosis levels between drug resistant and sensitive lines were tested. Genes that might be involved in the drug resistance process were screened from the differentially expressed genes that were co-upregulated in the two drug resistant lines by transcriptome sequencing. The expression level of the target gene in the drug resistant lines was verified by real-time quantitative polymerase chain reaction (RT-qPCR) and Western blot (WB). The expression differences of the target gene in ccRCC tumor tissues and adjacent tissues were analyzed in the Gene Expression Profiling Interactive Analysis (GEPIA) public database, and the impact of the target gene on the prognosis of ccRCC patients was analyzed in the Kaplan-Meier Plotter (K-M Plotter) database. After knocking down the target gene in the drug resistant lines using RNA interference by lentivirus vector, the phenotypic differences of the cell lines were tested again. WB was used to detect the levels of apoptosis-related proteins in the different treated cell lines to find molecular pathways that might lead to drug resistance.
RESULTS:
Cell lines 786-O-R and Caki-1-R resistant to axitinib were successfully constructed in vitro, and their IC50 were significantly higher than those of the sensitive cell lines (10.99 μmol/L, P < 0.01; 11.96 μmol/L, P < 0.01, respectively). Cell counting kit-8 (CCK-8) assay, colony formation, and 5-ethynyl-2 '-deoxyuridine (EdU) assay showed that compared with the sensitive lines, the proliferative ability of the resistant lines decreased, but apoptosis staining showed a significant decrease in the level of cell apoptosis of the resistant lines (P < 0.01). Although resistant to axitinib, the resistant lines had no obvious new replicated cells in the environment of 20 μmol/L axitinib. Nuclear protein 1 (NUPR1) gene was screened by transcriptome sequencing, and its RNA (P < 0.0001) and protein expression levels significantly increased in the resistant lines. Database analysis showed that NUPR1 was significantly overexpressed in ccRCC tumor tissue (P < 0.05); the ccRCC patients with higher expression ofNUPR1had a worse survival prognosis (P < 0.001). Apoptosis staining results showed that knockdown ofNUPR1inhibited the anti-apoptotic ability of the resistant lines to axitinib (786-O, P < 0.01; Caki-1, P < 0.05). WB results showed that knocking downNUPR1decreased the protein level of B-cell lymphoma-2 (BCL2), increased the protein level of BCL2-associated X protein (BAX), decreased the protein level of pro-caspase3, and increased the level of cleaved-caspase3 in the resistant lines after being treated with axitinib.
CONCLUSION
ccRCC cell lines reduce apoptosis through theNUPR1 -BAX/ BCL2 -caspase3 pathway, which is involved in the process of resistance to axitinib.
Humans
;
Carcinoma, Renal Cell/metabolism*
;
Axitinib/pharmacology*
;
Kidney Neoplasms/metabolism*
;
bcl-2-Associated X Protein
;
Nuclear Proteins
;
Cell Line, Tumor
;
Apoptosis
;
Cell Proliferation
6.MiR-744-5p inhibits the proliferation, invasion, and migration of clear-cell renal cell carcinoma cells by targeting CCND1.
Kun Yang LEI ; Wen Jie XIE ; Ting SUN ; Yi Fu LIU ; Xu WANG
Journal of Southern Medical University 2022;42(5):712-717
OBJECTIVE:
To explore the role of miR-744-5p/CCND1 axis in clear-cell renal cell carcinoma (ccRCC).
METHODS:
We examined the expression levels of miR-744-5p in 65 pairs of ccRCC and adjacent tissue specimens and in 5 ccRCC cell lines and human renal tubular epithelial (HK2) cells using qRT-PCR. The ccRCC cell lines 786-O and OSRC2 were transfected with miR-744-5p mimic, CCND1 mimic, or their negative control mimics, and the changes in cell proliferation, migration, and invasion were evaluated with CCK-8, wound healing, and Transwell assays. The downstream target molecules of miR-744-5p were predicted by bioinformatics analysis, and the expression level of CCND1 in ccRCC cells was verified by qRT-PCR and Western blotting. The relationship between miR-744-5p and CCND1 was further validated by dual luciferase reporter assay, and the role of the miR-744-5p/CCND1 axis in ccRCC was explored by rescue experiments.
RESULTS:
MiR-744-5p was significantly downregulated in ccRCC tissues and cell lines (all P < 0.05), and its overexpression inhibited the proliferation, migration, and invasion of ccRCC cells (all P < 0.05). Bioinformatics analysis and dual luciferase reporter assay showed that CCND1 was a downstream target of miR-744-5p. The results of rescue experiments showed that upregulation of CCND1 could partially reverse the inhibitory effect of miR-744-5p overexpression on ccRCC cell proliferation, migration, and invasion (all P < 0.05).
CONCLUSION
MiR-744-5p inhibits the malignant phenotype of ccRCC cells by targeting CCND1, and the miR-744-5p/CCND1 axis may be a novel target for diagnosis and treatment of ccRCC.
Carcinoma, Renal Cell/metabolism*
;
Cell Line, Tumor
;
Cell Movement/genetics*
;
Cell Proliferation/genetics*
;
Cyclin D1/genetics*
;
Humans
;
Kidney Neoplasms/metabolism*
;
MicroRNAs/metabolism*
7.Curcumin Inhibits Viability of Clear Cell Renal Cell Carcinoma by Down-Regulating ADAMTS18 Gene Methylation though NF-κ B and AKT Signaling Pathway.
Ben XU ; Yi-Ji PENG ; Wei-Jie ZHU
Chinese journal of integrative medicine 2022;28(5):419-424
OBJECTIVE:
To investigate the effect of curcumin on viability of clear cell renal cell carcinoma (ccRCC) and analyze its possible mechanism.
METHODS:
In cell lines of A498 and 786-O, the effects of curcumin (1.25, 2.5, 5 and 10 μ mol/L) on the viability of ccRCC were analyzed at 24, 48 and 72 h by MTT assay. The protein expression levels of ADAMTS18 gene, p65, phosphorylation p65 (pp65), AKT, phosphorylation AKT (pAKT) and matrix metallopeptidase 2 (MMP-2) before and after curcumin (10 μ mol/L) treatment were examined by Western blotting. Real-time PCR and methylation specific PCR (MSP) were applied to analyze the expression and methylation level of ADAMTS18 gene before and after curcumin treatment (10 μ mol/L).
RESULTS:
Curcumin significantly inhibited the viability of A498 and 786-O cell lines in a dose- and time-dependent manner (P<0.01). Up-regulation of ADAMTS18 gene expression with down-regulation of ADAMTS18 gene methylation was reflected after curcumin treatment, accompanied by down-regulation of nuclear factor κ B (NF-κ kB) related protein (p65 and pp65), AKT related protein (AKT and pAKT), and NF-κ B/AKT common related protein MMP-2. With ADAMTS18 gene overexpressed, the expression levels of p65, AKT and MMP2 were downregulated, of which were conversely up-regulated in silenced ADAMTS18 (sh-ADAMTS18). The expression of pp65, pAKT and MMP2 in sh-ADAMTS18 was down-regulated after being treated with PDTC (NF-κ B inhibitor) and LY294002 (AKT inhibitor).
CONCLUSIONS
Curcumin could inhibit the viability of ccRCC by down-regulating ADAMTS18 gene methylation though NF-κ B and AKT signaling pathway.
ADAMTS Proteins/metabolism*
;
Carcinoma, Renal Cell/pathology*
;
Cell Line, Tumor
;
Curcumin/pharmacology*
;
DNA Methylation
;
Female
;
Humans
;
Kidney Neoplasms/genetics*
;
Male
;
Matrix Metalloproteinase 2/metabolism*
;
NF-kappa B/metabolism*
;
Proto-Oncogene Proteins c-akt/metabolism*
;
Signal Transduction
8.Eosinophilic vacuolated tumor of the kidney: clinicopathological and molecular characteristics.
Hui Zhi ZHANG ; Qiu Yuan XIA ; Xian Gang YIN ; Su Ying WANG
Chinese Journal of Pathology 2022;51(5):437-443
Objective: To study the clinicopathological features, immunophenotype, molecular changes, differential diagnosis and prognosis of eosinophilic vacuolated tumor (EVT) of the kidney. Methods: Four cases were collected retrospectively from 2014 to 2020 at Ningbo Diagnostic Pathology Center. The clinicopathologic features and immunophenotypic profile were studied by light microscopy and immunohistochemistry. Targeted next-generation sequencing (NGS) panel was used to detect cancer-associated mutation. Follow-up and literature review were also performed. Results: Among the 4 patients studied,2 were males and 2 were females. The age of the patients ranged from 44 to 63 years (the mean age: 51 years).Tumor size ranged from 1.5 to 4.2 cm (mean: 2.3 cm). Microscopically, tumors were well-circumscribed, unencapsulated. Thick-walled vessels and entrapped renal tubules were found within or at the periphery of the tumors. The tumors were predominantly composed of nest pattern, and focal tubular pattern. The tumor cells exhibited abundant, eosinophilic, granular cytoplasm and conspicuous, large nucleoli. Prominent intracytoplasmic vacuoles were seen. These cytoplasmic vacuoles varied in size and frequently coalesced into a large space. Loose fibromatous or hyaline stroma was focally noted. Immunohistochemically, the tumor cells in all cases exhibited a CD117+/CK7-phenotype. All cases were positive for CD10 and p504s. MTOR, S6 and cathepsin K were positive in 4 cases. TFE3, CA9, Melan A and HMB45 were negative in all cases. SDHB retained expression. NGS demonstrated MTOR mutations in all cases, and TSC2 mutation in 2 cases. Conclusions: EVT is a rarely oncocytic renal tumor with unique morphology, immunohistochemical phenotype, molecular profile and an indolent behavior. Recognition of the characteristics of this novel but rare entity will allow for better classification of renal tumors.
Biomarkers, Tumor/metabolism*
;
Carcinoma, Renal Cell/pathology*
;
Female
;
Humans
;
Kidney/pathology*
;
Kidney Neoplasms/pathology*
;
Male
;
Retrospective Studies
;
TOR Serine-Threonine Kinases/genetics*
9.CK7+/CD117- low grade oncocytic tumor of the kidney: a clinicopathological analysis.
Yan Feng BAI ; Cheng Dong CHANG ; Bo WANG ; Ming ZHAO ; Xiao Dong TENG
Chinese Journal of Pathology 2022;51(10):976-980
Objective: To investigate the clinicopathological, immunohistochemical and molecular characteristics of low grade oncocytic tumors (LOT) of the kidney with CK7+/CD117- staining pattern for enhancing the understanding of renal LOT. Methods: The clinical data, histological morphology and immunophenotypes of seven renal LOT cases diagnosed at the Department of Pathology, the First Affiliated Hospital, Zhejiang University School of Medicine from January 2017 to April 2021 were analyzed. The patients were followed up. Among the seven patients, five underwent high-throughput DNA targeted sequencing, and their molecular characteristics were analyzed. Results: The patients' age ranged 59-82 years, with an average of 70 years. There were 2 males and 5 females. The boundary of the tumor was clear. The tumor cells had homogeneous eosinophilic cytoplasm and round or oval nuclei, with a perinuclear halo. Small basophilic nucleoli were conspicuous (WHO/International Society of Urological Pathology grade 2). In the hypercellular areas, the tumor cells were mainly arranged in dense solid or nest. In the stroma, there were dilated veins, thick-walled arterioles and thick collagen fiber bundles that divided the cells into pseudonodules. In the sparsely cellular area, the tumor cells were arranged in the so-called "tissue culture" fashion. In addition, the stroma contained fresh hemorrhagic foci and lymphoid aggregates. High-throughput sequencing of 5 cases revealed that one case harbored mTOR gene missense mutation and another case harbored TSC1 frameshift mutation. Conclusions: LOT of the kidney is an indolent tumor with an overall good prognosis. Pathologists should not misdiagnose it as renal oncocytoma and chromophobe renal cell carcinoma.
Adenoma, Oxyphilic/pathology*
;
Aged
;
Aged, 80 and over
;
Biomarkers, Tumor/genetics*
;
Carcinoma, Renal Cell/pathology*
;
Collagen
;
Female
;
Humans
;
Immunohistochemistry
;
Kidney/pathology*
;
Kidney Neoplasms/pathology*
;
Male
;
Middle Aged
;
Proto-Oncogene Proteins c-kit/metabolism*
;
TOR Serine-Threonine Kinases
10.Innate immune checkpoint Siglec10 in cancers: mining of comprehensive omics data and validation in patient samples.
Chen ZHANG ; Jiandong ZHANG ; Fan LIANG ; Han GUO ; Sanhui GAO ; Fuying YANG ; Hua GUO ; Guizhen WANG ; Wei WANG ; Guangbiao ZHOU
Frontiers of Medicine 2022;16(4):596-609
Sialic acid binding Ig-like lectin 10 (Siglec10) is a member of innate immune checkpoints that inhibits the activation of immune cells through the interaction with its ligand CD24 on tumor cells. Here, by analyzing public databases containing 64 517 patients of 33 cancer types, we found that the expression of Siglec10 was altered in 18 types of cancers and was associated with the clinical outcomes of 11 cancer types. In particular, Siglec10 was upregulated in patients with kidney renal clear cell carcinoma (KIRC) and was inversely associated with the prognosis of the patients. In 131 KIRC patients of our settings, Siglec10 was elevated in the tumor tissues of 83 (63.4%) patients compared with that in their counterpart normal kidney tissues. Moreover, higher level of Siglec10 was associated with advanced disease (stages III and IV) and worse prognosis. Silencing of CD24 in KIRC cells significantly increased the number of Siglec10-expressing macrophages phagocytosing KIRC cells. In addition, luciferase activity assays suggested that Siglec10 was a potential target of the transcription factors c-FOS and GATA1, which were identified by data mining. These results demonstrate that Siglec10 may have important oncogenic functions in KIRC, and represents a novel target for the development of immunotherapies.
Carcinoma, Renal Cell/pathology*
;
Gene Expression Regulation, Neoplastic
;
Humans
;
Immunity, Innate
;
Kidney Neoplasms/pathology*
;
Lectins/metabolism*
;
Prognosis
;
Receptors, Cell Surface/metabolism*

Result Analysis
Print
Save
E-mail