• Title/Summary/Keyword: FASN

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Expression of Fatty Acid Synthase Negatively Correlates with PTEN and Predicts Peritoneal Dissemination of Human Gastric Cancer

  • Xiang, Hong-Gang;Hao, Jun;Zhang, Wen-Jie;Lu, Wen-Jie;Dong, Ping;Liu, Ying-Bin;Chen, Lei
    • Asian Pacific Journal of Cancer Prevention
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    • v.16 no.16
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    • pp.6851-6855
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    • 2015
  • Background: This study aimed to examine the clinical significance of fatty acid synthase (FASN) expression in gastric cancer (GC), and investigate any prognostic role. Materials and Methods: FASN expression was assessed in gastric cancers by immunohistochemistry using 60 paraffin-embedded tissue specimens, and clinical data were collected by retrospective chart review. Moreover, FASN mRNA expression in 15 fresh resected specimens was evaluated by the reverse transcription-polymerase chain reaction (RT-PCR). Immunohistochemical staining of PTEN was performed to assess the correlation of PTEN with FASN in gastric cancer. Results: Increased expression of FASN was noted in gastric cancers. The frequency of FASN gene amplification was also significantly higher in gastric cancer than in adjacent normal tissue. FASN expression in human gastric cancer tissues was significantly correlated with patient TNM stage and peritoneal dissemination (p<0.05). Moreover, higher FASN expression significantly correlated with shorter overall survival (p<0.05). Here, upregulation of FASN negatively correlated with PTEN expression in gastric cancer. Conclusions: These findings indicate that FASN expression is upregulated in gastric cancer, and increased FASN may be critical to th peritoneal metastasis and survival. Our results suggest that FASN upregulation and PTEN downregualtion may be involved in peritoneal dissemination for gastric cancer progression.

Effect of the Fatty Acid Synthase and Acetyl CoA Carboxylase Genes on Carcass Quality in Commercial Hanwoo Population (한우의 Fatty Acid Synthase (FASN)와 Acetyl CoA Carboxylase-α (ACACA) 유전자내의 단일염기변이가 한우집단내의 도체형질에 미치는 영향)

  • Jeon, Eun-Kyeong;Kim, Sang-Wook;Choi, Yun-Jeong;Kim, Nae-Soo;Cho, Man-Weuk;Lee, Myoung-Il;Jeong, Yong-Ho;Lee, Jin-Suk;Kim, Kwan-Tae;Koh, Kyung-Chul;Kim, Kwan-Suk
    • Journal of Animal Science and Technology
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    • v.53 no.5
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    • pp.389-395
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    • 2011
  • This study was conducted to investigate the combined effect of fatty acid synthase (FASN) and Acetyl CoA Carboxylase-${\alpha}$ (ACACA) genes on carcass traits of Korean cattle (Hanwoo). A total of 1,057 commercial Hanwoo cattle provided by the NongHyup Livestock Research Center (NLRC) and Hanwoo Performance Competition (HPC) were used to analyze the effect of four single nucleotide polymorphisms (SNPs) within FASN (g.11280A>G, g.16024A>G, g.16039T>C, and g.17924A>G) and one SNP within ACACA (g.2274G>A) genes. In addition, the effect of genotypic combinations between FASN (g.17924A>G) and ACACA (g.2274G>A) SNPs has been studied with carcass traits. Significant associations were identified between g.17924A>G of FASN and carcass weight and back fat, and between the ACACA gene SNP g.2274G>A and longissimus muscle area with HPC samples. It was also found that both effects of FASN g.17924A>G and ACACA g.2274G>A polymorphisms were consistent in NLRC samples. Combined analyses of both NLRC and HPC samples also revealed the significant associations between the FASN g.17924A>G and carcass weight and back fat and between the ACACA g.2274G>A and back fat, respectively. The effect of the genotypic combination of g.17924A>G within FASN and g.2274G>A within ACACA genes showed that the combination of both GG genotypes of FASN and ACACA SNPs causes higher carcass weight and marbling score. The results of this study indicate that the two SNP markers within the FASN and ACACA genes can be utilized to select superior Hanwoo cows and calves in commercial Hanwoo farms.

Characterization of the Bovine FASN Gene Variation for Carcass and Beef Quality Traits in Hanwoo (소 FASN 유전자 변이의 연관불균형과 한우 도체형질에 미치는 영향)

  • Li, Song-Lan;Kim, Sang-Wook;Lee, Jung-Jae;Lee, Jun-Heon;Yoon, Du-Hak;Kim, Jong-Joo;Jeong, Young-Chul;Jeon, Soon-Hong;Choi, Jae-Won;Kim, Nae-Su;Kim, Kwan-Suk
    • Journal of Animal Science and Technology
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    • v.51 no.3
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    • pp.185-192
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    • 2009
  • Fatty acid synthase (FASN) is a multi-functional enzyme with a central role in the synthesis of long-chain fatty acid and has been considered as a positional candidate gene for BTA 19 quantitative trait loci (QTL) affecting milk-fat content and fatty acid composition. In this study, we sequenced the FASN gene in several cattle breeds including Hanwoo and imported beef cattle, and identified novel DNA polymorphisms and their linkage relationship in Hanwoo. We found a significant frequency difference of the FASN (AF285607) g.17924 A$\rightarrow$G polymorphism between Hanwoo (70%) and other breeds and this polymorphism has been known for an association with fatty acid composition in Angus. Furthermore, by direct DNA sequencing in 18 unrelated Hanwoo, we identified 27 SNPs including nine novel variations in the FASN gene. Among 27 SNPs identified in the FASN gene, four SNPs were further genotyped in 100 Hanwoo and 96 imported beef cattle, and analyzed for haplotype construction and association with beef quality traits. We performed haplotype block and linkage disequilibrium studies using four selected SNPs. Two different haplotype blocks (block A: g.10568 C$\rightarrow$T and g.11280 G$\rightarrow$ A; block B: g.13125 C$\rightarrow$T and g.17924 G$\rightarrow$A) were constructed and the block A in particular had a very high r2 (0.936), which indicated a nearly complete linkage disequilibrium existed between the g.10568 C$\rightarrow$T and g.11280 G$\rightarrow$A polymorphisms. A total of four major haplotypes (frequency > 0.05) were identified with the four polymorphisms including TATG (0.36), CGCG (0.31), CGTA (0.19) and TACG (0.06). Statistical association analysis revealed that the g.10568 C$\rightarrow$T and g.11280 G$\rightarrow$A polymorphisms in the FASN were significantly associated with meat color (P=0.004) and texture (P=0.0114). The g.13125 C$\rightarrow$T and g.17924 G$\rightarrow$A polymorphisms in the FASN were also significantly associated with back-fat thickness and quantity index (P=0.0179 and 0.0495, respectively). Our findings suggested that the FASN gene polymorphisms may be used for determining the (unsaturated) fatty acid contents and carcass trait in the Hanwoo beef.

Mechanism of Fatty Acid Synthase in Drug Tolerance Related to Epithelial-mesenchymal Transition of Breast Cancer

  • Li, Jun-Qin;Xue, Hui;Zhou, Lan;Dong, Li-Hua;Wei, Da-Peng;Li, Hua
    • Asian Pacific Journal of Cancer Prevention
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    • v.15 no.18
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    • pp.7617-7623
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    • 2014
  • Objective: The mechanism of action of fatty acid synthase (FASN) in drug tolerance of breast cancer cells with epithelial-mesenchymal transition (EMT) features was investigated. Methods: The breast cancer cell line MCF-7-MEK5 with stably occurring EMT and tumour necrosis factor-${\alpha}$ (TNF-${\alpha}$) tolerance was used as the experimental model, whereas MCF-7 acted as the control. Tumour cells were implanted into nude mice for in vivo analysis, and cerulenin was used as a FASN inhibitor. RT-PCR, real-time quantitative PCR and Western blot were employed to detect the expression of FASN, TNFR-1, TNFR-2, Wnt-1, ${\beta}$-catenin and cytC at the RNA and protein levels. Results: Compared with MCF-7, TNFR-1 expression in MCF-7-MEK5 was slightly changed, TNFR-2 was decreased, and FASN, Wnt-1, ${\beta}$-catenin and cytC were increased. The expression of Wnt-1 and ${\beta}$-catenin in MCF-7-MEK5 decreased after cerulenin treatment, whereas cytC expression increased. Conclusions: The important function of FASN in the drug tolerance of breast cancer may be due to the following mechanisms: FASN downregulated TNFR-2 expression through lipid rafts to make the cells less sensitive to TNF-${\alpha}$, and simultaneously activated the Wnt-$1/{\beta}$-catenin signalling pathway. Thus, cytC expression increased, which provided cells with anti-apoptotic capacity and induced drug tolerance.

Effect of the Fatty Acid Synthase Gene for Beef Quantity Traits in Hanwoo Breeding Stock (한우 Fatty Acid Synthase (FASN) 유전자 반수체형의 후대검정우 육량 및 육질에 미치는 영향)

  • Kim, Sang-Wook;Lee, Jun-Heon;Kim, Jin-Ho;Won, You-Seog;Kim, Nae-Soo;Kim, Kwan-Suk
    • Journal of Animal Science and Technology
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    • v.52 no.1
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    • pp.9-16
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    • 2010
  • A previous study has shown that the g.17924G>A polymorphism of fatty acid synthase (FASN) is associated with unsaturated fatty acid composition in the Hanwoo beef, hence this study was conducted to evaluate the effect of single nucleotide polymorphisms (SNPs) within FASN gene on the selection phenotypes of Hanwoo breeding stock. A total of 925 progeny test steers were used to genotype g.11280G>A, g.13125T>C, and g.17924G>A polymorphisms and significant associations were found among g.11280G>A, g.17924G>A, and carcass traits, such as carcass weight, backfat thickness, and beef quantity index. No significant association was found between g.13125T>C and carcass traits. Although the degree of linkage disequilibrium (LD) was not strong among g.11280G>A, g.13125T>C, and g.17924G>A in the LD analysis, four major haplotype classes were formed with the genotypic information within the FASN gene; the frequencies of the halpotypeswere -GCG-[0.378], -ATG-[0.301], -GTA-[0.191], and -ACG-[0.063], respectively. Phenotypic association was performed among these haploptypes, and the haplotype 2 (-ATG-)was significantly associated with higher carcass weight when compared to the other haplotypes, i.e. haplotype 1 (-GCG-) and haplotype 3 (-GTA-). A copy number of the FASN haplotype 3 (-GTA-) had also a significant association with carcass weight of subjects. In conclusion, it was observed that two polymorphisms (g.11280G>A and g.17924G>A) and their haplotypes within the FASN gene are consistently associated with carcass traits. Therefore, it is desirable to use the FASN polymorphisms for pre-selection program as genetic marker with improved carcass yield and beef quality of the Hanwoo sire at the Hanwoo Improvement Center as well as for commercial Hanwoo producers, the FASN genotypic information can be used for a part of selecting Hanwoo dam for superior calf production.

Association of FASN and SCD genes with fatty acid composition in broilers

  • Maharani, Dyah;Seo, Dong-Won;Choi, Nu-Ri;Jin, Shil;Cahyadi, Muhammad;Jo, Cheorun;Lee, Jun-Heon
    • Korean Journal of Agricultural Science
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    • v.40 no.3
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    • pp.215-220
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    • 2013
  • Fatty acids (FAs) were considered in activating nuclear hormone receptors that play significant roles in the cellular lipid metabolism by the regulation of several genes. Previously, fatty acid synthase (FASN) and stearoyl-CoA desaturase (SCD) genes have been known to regulating the FA metabolism. In this study, associations of FASN and SCD genes with fatty acid (FA) composition in broilers were investigated. Tissue samples from 95 Cobb 500 broilers were used for DNA extraction. The g.1222 A>G SNP located in intron 42 of FASN gene and 2 SNPs in SCD gene, one in exon 2 (g.3728A>G) and the other in exon 4 (g.12903G>A), were subjected for genotyping using PCR-RFLP method. One of the SNPs in SCD gene, SNP g.3728A>G had significant association with myristoleic acid (C14:1; P<0.05), palmitic acid (C16:0; P<0.05), palmitoleic acid (C16:1; P<0.05) and saturated FA (SFA; P<0.05). However, the SNP g.1222A>G in FASN gene had only suggestive association with arachidic acid (C20:0; P=0.08). The findings in this study suggest that the SNP in exon 2 of SCD gene can be used as a molecular marker for selecting birds having desirable FA composition in broilers.

DNA Polymorphisms in SREBF1 and FASN Genes Affect Fatty Acid Composition in Korean Cattle (Hanwoo)

  • Bhuiyan, M.S.A.;Yu, S.L.;Jeon, J.T.;Yoon, D.;Cho, Y.M.;Park, E.W.;Kim, N.K.;Kim, K.S.;Lee, J.H.
    • Asian-Australasian Journal of Animal Sciences
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    • v.22 no.6
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    • pp.765-773
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    • 2009
  • Sterol regulatory element binding factor 1 (SREBF1) and fatty acid synthase (FASN) genes play an important role in the biosynthesis of fatty acids and cholesterol, and in lipid metabolism. This study used polymorphisms in the intron 5 of bovine SREBF1 and in the thioesterase (TE) domain of FASN genes to evaluate their associations with beef fatty acid composition. A previously identified 84-bp indel (L: insertion/long type and S: deletion/short type) of the SREBF1 gene in Korean cattle had significant associations with the concentration of stearic (C18:0), linoleic (C18:2) and polyunsaturated fatty acids (PUFA). The stearic acid concentration was 6.30% lower in the SS than the LL genotype (p<0.05), but the linoleic and PUFA contents were 11.06% and 12.20% higher in SS compared to LL (p<0.05). Based on the sequence analysis, five single nucleotide polymorphisms (SNPs) g.17924G>A, g.18043C>T, g.18440G>A, g.18529G>A and g.18663C>T in the TE domain of the FASN gene were identified among the different cattle breeds studied. Among these, only g.17924 G>A and g.18663C>T SNPs were segregating in the Hanwoo population. The g.17924G>A SNP is a non-synonymous mutation (thr2264ala) and was significantly associated with the contents of palmitic (C16:0) and oleic acid (C18:1). The oleic acid concentration was 3.18% and 2.79% higher in Hanwoo with the GG genotype than the AA and AG genotypes, respectively (p<0.05), whereas the GG genotype had 3.8% and 4.01% lower palmitic acid than in those cattle with genotype AA and AG, respectively (p<0.05). Tissue expression data showed that SREBFI and FASN genes were expressed in a variety of tissues though they were expressed preferentially in different muscle tissues. In conclusion, the 84-bp indel of SREBF1 and g.17924G>A SNP of the FASN gene can be used as DNA markers to select Hanwoo breeding stock for fatty acid composition.

Major genotype identification affecting economic traits in FABP4, SCD, FASN and SREBPs genes of Korean cattle (한우의 FABP4, SCD, FASN, SREBPs 유전자에서 경제형질에 영향을 미치는 우수 유전자형 선별)

  • Lee, Jea-Young;Park, Jae-Cheol
    • The Korean Journal of Applied Statistics
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    • v.29 no.7
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    • pp.1247-1255
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    • 2016
  • Kim and Lee (2015) identified a superior FABP4 gene that improves the grade and fatty acid of Korean cattle. This study selects a superior genotype by expanding genes that influence the economic traits of Korean cattle. Expanded genes are FABP4, SCD, FASN and SREBPs that are related to grade and fatty acid (Oh, 2014). We use the adjusted economic-trait values with environmental factors excluded. We also applied multifactor dimensionality reduction(MDR) method to data of the adjusted economic-trait values. As a result, we identified superior genes and genotypes which improved the grade and fatty acid of Korean cattle.

Association of genetic polymorphism in fatty acid synthase with BodyFat and fatty acid composition in Hanwoo (한우 FASN 유전자변이와 한우 지방형질 및 지방산조성과의 연관성 분석)

  • Lee, Seung-Hwan;Kim, Hyeong-Cheol;Cho, Won-Mo;Chang, Sun-Sik;Kim, Bum-Soo;Chang, Gul-Won;Lee, Jun-Hun;Yeon, Seong-Heum;Hong, Seong-Koo
    • Korean Journal of Agricultural Science
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    • v.38 no.2
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    • pp.257-262
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    • 2011
  • The aim of this study was to identify the polymorphism on fatty acid synthase (FASN) gene and its association with fat traits and fatty acid composition in Hanwoo. We genotyped a SNP (g.16024G${\rightarrow}$A) detected in Exon34 of FASN on 90 Hanwoo steers by PCR RFLP. A linear mixed model revealed an association of g.16024G${\rightarrow}$A with total body fat contents (P=0.006), while there is no significant effect between g.16024G${\rightarrow}$A and other traits (IMF, BF and fatty acid composition). Regression coefficient and $R^2$ of the SNP was -1.5 kg and 0.36 in this anslysis. Expecially, AA type of g.16024G${\rightarrow}$A bas a less amount of body fat (1.5 kg) than GG type of the SNP in Hanwoo. In conclusion, this study indicates an important role for FASN gene in determining body fat content in Hanwoo.

A potential role for fatty acid biosynthesis genes during molting and cuticle formation in Caenorhabditis elegans

  • Li, Yingxiu;Paik, Young-Ki
    • BMB Reports
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    • v.44 no.4
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    • pp.285-290
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    • 2011
  • Caenorhabditis elegans undergoes a developmental molting process that involves a coordinated interplay among diverse intracellular pathways. Here, we investigated the functions of two fatty acid biosynthesis genes; pod-2, encoding acetyl-CoA carboxylase, and fasn-1, encoding fatty acid synthase, in the C. elegans molting process. Although both the pod-2 and fasn-1 genes were expressed at constant levels throughout C. elegans development, knockdown of the proteins encoded by these genes using RNA interference produced severe defects in triglyceride production, molting, and reproduction that were coupled to suppression of NAS-37, a metalloprotease. An assessment of the structure and integrity of the cuticle using a COL-19::GFP marker and Hoechst 33258 staining showed that downregulation of either pod-2 or fasn-1 impaired cuticle formation and disrupted the integrity of the cuticle and the hypodermal membrane.