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Biomedical subjects

You-Yong Lu

Publications and source records attributed to You-Yong Lu.

At least 19 recordsLinked to original sources

Frequent mutation related with overexpression of DNA polymerase beta in primary tumors and precancerous lesions of human stomach.

To explore whether DNA polymerase beta (pol beta) contributes to the malignant transformation of gastric mucosa, we examined pol beta in gastric tumor cell lines, primary tumors and precancerous lesions. Point mutations of pol beta were detected in 6 of 13 cell lines and 23 of 104 tissues including 35.0% (14/40) of gastric cancer (GC), 30.0% (3/10) of dysplasia (Dys), 28.6% (4/14) of intestinal metaplasia (IM) and 10.5% (2/19) of chronic atrophic gastritis (CAG), respectively. A frequent mutation was a T to C transition at nucleotide 889, which was observed in 4 GC cell lines, 7 GC, 2 Dys, and 2 IM. The level of pol beta expression in tumors was higher than that of their matched normal tissues and gradual changes from GC, Dys, CAG to IM. These results indicate that the mutation and overexpression of pol beta may influence the progression during gastric carcinogenesis.

Adult↗

Matrix metalloproteinase 11 depletion inhibits cell proliferation in gastric cancer cells.

Our previous study has shown that matrix metalloproteinase 11 (MMP11) is highly expressed in tumor cell lines and primary tumor of gastric cancer (GC). In order to reveal the correlation between expression of MMP11 and biological features of GC cell, we have constructed the recombinant plasmids producing hairpin small interfering RNA (siRNA) to target MMP11 mRNA using a vector-based RNA interference technology. Stable transfection of recombinants into GC cell line BGC823 specifically depleted the mRNA and protein of MMP11 as demonstrated by RT-PCR and Western blotting analysis. The siRNA-treated cells exhibited significantly decreased growth ability compared with mock transfectants and parental BGC823 cells. Furthermore, colony formation of MMP11 deficient cells was dramatically inhibited in soft agar and tumorigenicity was reduced in nude mice, respectively. These results provide new insights into the function of MMP11 and suggest that MMP11 may play an important role in the control of cell proliferation and tumor development in GC.

Animals↗

Polymorphisms and mutations of the folate receptor-alpha gene and risk of gastric cancer in a Chinese population.

Folate deficiency is associated with increased risk of many human diseases including several cancers. Folate receptor-alpha (FR-alpha) plays an important role in mediating influx of folates into cells and its expression can be induced by some environmental risk factors. Our previous study showed that decreased expression of FR-alpha occurs in human gastric cancer cell lines. In order to reveal the molecular mechanism of the difference of FR-alpha expression among these cell lines and analyze the relation between the mutations or/and polymorphisms of FR-alpha gene and gastric cancer, we screened the mutations of global FR-alpha gene in 12 gastric cancer cell lines and 28 gastric tumors and matched normal tissues by using PCR-DHPLC and DNA sequencing techniques, then further checked the exon2 of FR-alpha gene in 138 gastric tumors and matched normal tissues. Furthermore, we examined the relationship between two polymorphisms of FR-alpha A1314G and C1816delC and risk for gastric cancer in 296 cases and 354 age and sex-matched controls in northern China. We found that the allele frequency of FR-alpha1314A among cases was significantly higher than that among controls (0.186 vs. 0.143, P=0.014). Subjects with the A/G and A/A genotype had an increased risk for developing gastric cancer compared with the G/G genotype (OR=1.55; 95% CI=1.10-2.17). These results support the hypothesis that genetic polymorphism in the FR-alpha gene may contribute to susceptibility to carcinogenesis of the gastric cancer in the at-risk Chinese population.

Adolescent↗

Detection of frameshift mutations of RIZ in gastric cancers with microsatellite instability.

AIM: To study the frameshift mutations of the retinoblastoma protein-interacting zinc finger gene RIZ in gastric cancer with microsatellite instability, and to identify two coding polyadenosine tracts of RIZ. METHODS: Frameshift mutations at (A)8 and (A)9 tracts of RIZ were detected in 70 human gastric cancer (HGC) specimens by DHPLC and DNA sequencing. Microsatellite instability (MSI) status was assessed by two mononucleotide markers, BAT26 and BAT25, by means of denaturing high-performance liquid chromatography (DHPLC). RESULTS: In 70 HGC samples, 8 (11.4%) were found positive for instabilities at BAT26 and BAT25. In 7 of the 8 cases with instabilities at both BAT26 and BAT25 (MSI-H), 1 was unstable at BAT26 but stable at BAT25. Frameshift mutations were identified in 4 (57.1%) of the 7 samples with MSI-H in the (A)9 tract of RIZ without mutations in the (A)8 tract. In contrast, frameshift mutations were found in neither of the polyadenosine tracts in 63 samples of MSI-L or MSI stable tumors. Pro704 LOH detection in 4 cases with frameshift mutations did not find LOH in these cases. CONCLUSION: Frameshift mutations of RIZ may play an important role in gastric cancers with MSI.

DNA-Binding Proteins↗

Quantitative detection of common deletion of mitochondrial DNA in hepatocellular carcinoma and hepatocellular nodular hyperplasia.

AIM: To study the deletion of mitochondiral DNA in hepatocellular carcinoma and hepatocellular nodular hyperplasia and its significance in the development of cancer. METHODS: Deleted mtDNA (CD-mtDNA) and wild type mtDNA (WT-mtDNA) were quantitatively analyzed by using real-time PCR in 27 hepatocellular carcinomas (HCC) and corresponding noncancerous liver tissues and 27 hepatocellular nodular hyperplasiae (HNH). RESULTS: A novel CD (4 981 bp) was detected in 85% (23/27) and 83%(22/27) of HCC and HNH tumor tissues, respectively, which were significantly higher than that in paired noncancerous liver tissues (57%, 15/27) (P<0.05). The CD/WT-mtDNA ratio in HCC tumors was 0.00092 (median, interquartile range, 0.0001202-0.00105), which was significantly higher than that in paired noncancerous liver tissues (median, 0.000, quartile range, 0-0) (P=0.002, Mann-Whitney Test), and was 25 of times of that in HNH tissues (median, 0.0000374, quartile range, 0-0.0004225) (P=0.002, Mann-Whitney test). CONCLUSION: CD-mtDNA mutation plays an important role in the development and progression of HCC.

Base Sequence↗

Gene expression profiles of hepatocytes treated with La(NO3)3 of rare earth in rats.

AIM: To compare the gene expression between La(NO(3))(3)-exposed and control rats in vivo. METHODS: Rats were fed La(NO(3))(3) once daily at a dose of 20 mg/kg for one month by gavage. Gene expression of hepatocytes was detected using mRNA differential display (DD) technique and cDNA microarray and compared between treated and control groups. RESULTS: Six differentially expressed sequence tags were cloned by DD, of which five were up regulated and one was down regulated in treated rats. Two sequences were determined. One band was novel. The other shared 100% sequence homology with AU080263 Sugano mouse brain mncb Mus musculus cDNA clone MNCb-5435 5'. With DNA microarray, 136 differentially expressed genes were identified including 131 over-expressed genes and 5 under-expressed genes. Most of these differentially expressed genes were cell signal and transmission genes, genes associated with metabolism, protein translation and synthesis. CONCLUSION: La(NO(3))(3) could change the expression levels of some kinds of genes. Further analysis of the differentially expressed genes would be helpful for understanding the wide biological effect spectrum of rare earth elements.

Animals↗

Alteration of the ATM gene occurs in gastric cancer cell lines and primary tumors associated with cellular response to DNA damage.

Ataxia telangiectasia mutated (ATM) is the gene mutated in the genetic disorder ataxia telangiectasia (AT), the symptoms of which include sensitivity to radiation and an increased risk of cancer. ATM is a kinase involved in activating the appropriate damage-response pathway, leading to either cell-cycle arrest or apoptosis, and is therefore a key checkpoint molecule in regulating cell-cycle response to DNA damage and responsible for maintenance of genome integrity. However, little is known about the association of ATM mutations with human gastric cancer (HGC). In order to determine the mutation and mRNA expression changes of the ATM gene in HGC, we performed analyses by denaturing high-performance liquid chromatography (DHPLC), DNA sequencing and RT-PCR technique on 13 human gastric tumor cell lines and 30 cases of fresh tumor specimens matched normal tissue. We compared the potential effect of the ATM gene mutation and cell behavior including cell-cycle arrest and induction of apoptosis in the tumor cell lines MGC803 and BGC823 with and without ionizing radiation (IR) exposure. Our data show that frequent variations were observed at 10 exons and 2 cDNA fragments which covered 8 other exons of the ATM gene as 5 out of 13 on the cell lines (38.5%) and 2 out of 30 cases in the tissue specimens (6.7%). All point mutations were confirmed as base substitutions (5982T-C; 6620A-G; 8684G-G/A; 9389C-G) and deletions (1079delC) by use of DNA sequencing. Among the mutations, one was reported previously in breast cancer, the other five have not yet been reported. The expression of ATM was significantly lower in five cell lines (MGC803; MKN45; SGC7901; GES and SUN-1) than in two others (BGC823 and RF48). G2/M cell-cycle arrest and apoptosis were observed in ATM-deficient MGC803 cells challenged with IR. A transient up-regulation of p53 occurred 1h post-IR in BGC823 cells but not in MGC803 cells. Our findings suggest that ATM mutations might be a pathogenic factor for an increased risk of gastric cancer, and the dysfunction of ATM may lead to a hypersensitivity to ionizing radiation in gastric cancer cells, possibly by a p53-dependent pathway.

Ataxia Telangiectasia Mutated Proteins↗

Protective role of metallothionein (I/II) against pathological damage and apoptosis induced by dimethylarsinic acid.

AIM: To better clarify the main target organs of dimethylarsinic acid toxicity and the role of metallothionein (MTs) in modifying dimethylarsinic acid (DMAA) toxicity. METHODS: MT-I/II null (MT(-/-)) mice and the corresponding wild-type mice (MT(+/+)), six in each group, were exposed to DMAA (0-750 mg/kg body weight) by a single oral injection. Twenty four hours later, the lungs, livers and kidneys were collected and undergone pathological analysis, induction of apoptotic cells as determined by TUNEL and MT concentration was detected by radio-immunoassay. RESULTS: Remarkable pathological lesions were observed at the doses ranging from 350 to 750 mg/kg body weight in the lungs, livers and kidneys and MT(+/+) mice exhibited a relatively slight destruction when compared with that in dose matched MT(-/-) mice. The number of apoptotic cells was increased in a dose dependent manner in the lungs and livers in both types of mice. DMAA produced more necrotic cells rather than apoptotic cells at the highest dose of 750 mg/kg, however, no significant increase was observed in the kidney. Hepatic MT level in MT(+/+) mice was significantly increased by DMAA in a dose-dependent manner and there was no detectable amount of hepatic MT in untreated MT(-/-) mice. CONCLUSION: DMAA treatment can lead to the induction of apoptosis and pathological damage in both types of mice. MT exhibits a protective effect against DMAA toxicity.

Animals↗

[Frequent 4 977 bp deletion of mitochondrial DNA in tumor cell lines, solid tumors and precancerous lesions of human stomach].

OBJECTIVE: To clarify the frequency of mtDNA 4 977 bp deletion in tumor cell lines, solid tumors, patient's serum of gastric tumor and to find a easy and exact method to diagnose gastric tumor. METHODS: Primer-shift PCR method was used in 13 gastric tumor cell lines, 52 cases of gastric fresh tumor tissues matched the adjacent normal tissues, 40 cases of patient's serum of gastric tumor and 40 cases of normal serums for analysis of mtDNA deletion. RESULTS: Frequency of 4 977 bp mtDNA deletion was detected in 12 of 13 (92.3%) tumor cell lines, 38 of 52 (73.1%) cases of solid tumor tissues, 27 of 52 (52%) adjacent normal tissues, 17 of 40 (42.5%) patient's serum and 8 of 40 (20%) normal serums. Further more, in 2 of 10 pairs microdissected specimens, we found this deletion occurred not only in primary tumor but also in intestinal metaplasia comparing with no deletion was found in normal tissues. The frequency of this deletion was statistically significantly higher in the gastric tumor tissues and serums than in the adjacent normal tissues and serums. A good correlation between the deletion and young age of patients was representative in our data. CONCLUSION: mtDNA 4 977 bp deletion maybe play an important role in the carcinogenesis of human gastric mucous and maybe has happened in the tumor cell malignant transformation. To detect this deletion in patient's serum is a easy and exact method and maybe become a potential tumor marker.

Adenocarcinoma↗

High throughput detection of microsatellite instability by denaturing high-performance liquid chromatography.

Microsatellite instability (MSI) is a hallmark of the DNA replication error phenotype, due to the inactivation of mismatch repair genes. MSI has been implicated in colon and many other gastrointestinal cancers. MSI usually can be analyzed by PCR amplification of microsatellite markers followed by electrophoresis and detected using autoradiography or fluorescence techniques. We report here a novel method for high-throughput detection of MSI using denaturing high performance liquid chromatography (DHPLC). Amplification of two mononucleotide markers (BAT25 and BAT26) by polymerase chain reaction (PCR) is followed by DHPLC analysis to display alteration in the length of repetitive sequences. These two markers were tested in 84 colorectal cancer samples confirmed to be 44 MSI-H and 40 MSI-L or MSS, previously defined by multiple microsatellite markers and/or by immunohistochemical analyses of MLH1 and MSH2 proteins. Among 44 MSI-H samples, sequence variations in BAT26 and BAT25 were detected in 44 (100%) and 43 (98%), respectively, while no sequence variation in the two markers was detected in 40 MSI-L or MSS samples. A total of 96 gastric cancers and their matched normal tissues were then analyzed for MSI-H using this method. Sequence variations in BAT26 and BAT25 were detected in nine (9.4%) samples. Seven of the nine cases were shown unstable at both BAT26 and BAT25; one each was unstable at BAT26 or BAT25. These results were confirmed by autoradiography analyses. Together, our results demonstrate high sensitivity and specificity of DHPLC in the analysis of sequence variations in BAT25 and BAT26 to determine MSI status. This simple, efficient, and high-throughput approach will facilitate analysis of MSI in large sample sets of any cancers.

Chromatography, High Pressure Liquid↗

[Mutations of fragile histidine triad gene in Peutz-Jeghers syndrome and canceration].

BACKGROUND & OBJECTIVE: Peutz-Jeghers syndrome (PJS) is an autosomal dominantly inherited disease. Fragile histidine triad (FHIT) gene is an important tumor suppressor gene at the fragile sites region of 3p14. The authors' previous study suggested that PJS patients might have a susceptible gene at the region of 3p14.2. This study was designed to reveal the relationship between the variant of FHIT gene in PJS and its canceration. METHOD: Mutations of FHIT gene in 15 PJS patients and 20 unaffected members in 6 PJS families were determined using denaturing high-performance liquid chromatography (DHPLC), polymerase chain reaction-single strand conformation polymorphism(PCR-SSCP) and DNA sequencing techniques. RESULTS: A non-sense mutation and a frame-shift mutation were identified at codon 54(GAA to TAA) (exon 6) which led to the change of the amino acid from glutamic acid (Glu) to stop codon, and a guanine insertion at codon 62 in exon 6 resulting in a premature stop codon TGA at codon 111 in one PJS patient. A homozygous deletion and a synonymous mutation were detected in exon 8. The homozygous deletion of exon 8 in FHIT gene was found in two polyps tissues and two cancerous tissues. And in 3 sporadic cases, the patients and their mothers have the same bands of SSCP and the same elution profiles of DHPLC when exon 8 was amplified. The DNA sequencing result showed that a synonymous mutation (polymorphism) occurred at codon 98 [CAT (H)-->CAC (H)], this mutation resulted in no change of amino acid. In addition, one base substitute from A to G mutation at 5'end, +42 nucleotide in intron 6 of FHIT gene was detected in seven patients and two unaffected members. CONCLUSION: PJS patients have low frequency point mutation of FHIT gene and their cancerous tissues had homozygous deletions in FHIT gene. This study indicated that the mutations and deletions of FHIT gene in PJS may play a role in the development of PJS and their cancerations.

Acid Anhydride Hydrolases↗

[Expression of transporter associated with antigen processing (TAP) in childhood acute leukemia and its clinical significance].

BACKGROUND & OBJECTIVE: Transporter associated with antigen processing(TAP) participates in immune surveillance, so it is probably relevant to carcinogenesis. Investigation of expression of TAP and its clinical significance in childhood acute leukemia will be helpful to clarify pathogenesis and to develop immunotherapy strategy. METHODS: RT-PCR analysis was used to detect the expression of TAP1 and TAP2 in leukemia cells from bone marrow in 34 inpatients with primary acute lymphoblastic leukemia (ALL), 15 inpatients with relapsed ALL, 20 inpatients with acute medullary leukemia (AML), and 20 surgical inpatients without systematic disorders as control. And then,the absorbance (A) values of expanded bands were measured by digital imaging analyzer and relative A values were worked out based on A value of GAPDH (positive inside control). RESULTS: The relative A values of TAP1(0.448+/-0.167 and 0.169+/-0.021,respectively) and TAP2(0.196+/-0.180 and 0.112+/-0.020, respectively) in primary ALL group and relapsed ALL group were lower than those in control group (P< 0.01). The A values of LMP2, LMP7, and PA28alpha (991.4+/-532.7, 686.3+/-663.8, and 2022.3+/-1622.3, respectively) in relapsed ALL group were lower than those in control group (P less than 0.01,0.01 and 0.05, respectively). The A value of LMP2 in relapsed group was lower than that in control (P< 0.01). The A values of LMP7 for the cases with no remission and relapse were both lower than that for the cases with constant complete remission in primary ALL group (P< 0.01). The relative A value of TAP2 in AML group was lower than that in control group (P< 0.05). The relative A value of TAP1 in relapsed ALL group was lower than that in primary ALL group (P< 0.05). In primary ALL group, the relative A value of TAP1 (0.215+/-0.159) for cases with relapse (6/34 cases) was lower than that (0.462+/-0.189) for those with constant complete remission (24/34 cases) (P< 0.05). CONCLUSION: There exists decreased expression of TAP in both childhood ALL and AML, which probably contributes to the escape of leukemia cells from immune surveillance. Decreased expression of TAP1 subunit is probably related to the relapse of ALL.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

[Effect of allitridi on cyclin D1 and p27(Kip1) protein expression in gastric carcinoma BGC823 cells].

BACKGROUND & OBJECTIVE: Previous study showed that allitridi markedly suppresses cellular proliferation, blocks cell cycle at G(1) phase, and induces cell apoptosis of human gastric cancer BGC823 cell. During the investigation of its molecular mechanisms and target genes, the authors found that protein expression of cyclin D1 and p27(Kip1) play an important role in an allitridi-induced G(1) arrest. This study was designed to explore the effect of allitridi on the expression of cyclin D1 and p27(Kip1) in BGC823 cells. METHODS: After total RNA and total protein in allitridi-treated (25 microg/ml) and allitridi-untreated BGC823 cells were abstained, Western blot analysis was performed to determine the protein levels of cyclin D1 and p27(Kip1), and RT-PCR was performed to determine the mRNA levels of cyclin D1 and p27(Kip1). RESULTS: After treated with 25 microg/ml allitridi for 24 hours, the protein levels of cyclin D1 of BGC823 cells were downregulated and the protein levels of p27(Kip1) were upregulated, and this changes were more obvious after 48 hours,while their mRNA levels remained unchanged. CONCLUSION: Allitridi may influence the protein expression of cyclin D1 and p27(Kip1) in BGC823 cells, while do not influence their mRNA transcription.

Allyl Compounds↗

Isolation of diallyl trisulfide inducible differentially expressed genes in human gastric cancer cells by modified cDNA representational difference analysis.

Extensive epidemiologic studies indicated protective effects of consumption of garlic on reducing human gastric cancer (HGC) incidence. Diallyl trisulfide (DATS), a critical organic allyl sulfur component of garlic, was reported to have chemopreventive effects in inhibiting tumor process. We used DATS to treat HGC cell line BGC823 cells, and showed that DATS induces G1/S arrest and apoptosis in BGC823 cells demonstrated by a flow cytometric analysis. To further isolate DATS inducible differentially expressed genes in BGC823 cells, we combined a highly specific subtractive hybridization of cDNA representational difference analysis (cDNA RDA) with a sensitive bidirectional radioactive detection of mRNA differential display (mRNA DD) to develop a subtractive hybridization differential display (SHDD) method. This modified method adopted a first round of bidirectional subtractive hybridization between two sample cDNAs and a second round of bidirectional subtractive hybridization between the two resultant first-round difference products. Bidirectional subtractive hybridizations magnified the differences between the two sample cDNAs and favored isolating mRNA species with very small expression differences. We employed the SHDD method to detect DATS inducible differentially expressed genes in BGC823 cells. A total of 14 cDNA fragments (11 upregulated and 3 downregulated by DATS treatment) were isolated and confirmed by reverse Northern blot analysis. Our data show that SHDD is a powerful technique for identifying differentially expressed mRNA species between two sample cDNAs and provide useful cellular and molecular information for understanding the effects of garlic against human gastric cancer.

Allyl Compounds↗

Construction of cDNA representational difference analysis based on two cDNA libraries and identification of garlic inducible expression genes in human gastric cancer cells.

AIM: To elucidate molecular mechanism of chemopreventive efficacies of garlic against human gastric cancer (HGC). METHODS: HGC cell line BGC823 was treated with Allitridi (a kind of garlic extract) and Allitridi-treated and parental BGC823 cDNA libraries were constructed respectively by using lambdaZAP II vector. cDNA Representational Difference Analysis (cDNA RDA) was performed using Bam H I cutting-site and abundant cDNA messages provided by the libraries. Northern blot analysis was applied to identify the obtained difference products. RESULTS: Two specific cDNA fragments were obtained and characterized to be derived from homo sapiens folate receptor alpha (FRalpha) gene and calcyclin gene respectively. Northern blot results showed a 4-fold increase in FRalpha gene expression level and 9-fold increase in calcyclin mRNA level in BGC823 cells after Allitridi treatment for 72h. CONCLUSION: The method of cDNA RDA based on cDNA libraries combines the high specificity of cDNA RDA with abundant cDNA messages in cDNA library; this expands the application of cDNA library and increases the specificity of cDNA RDA. Up-regulation of FRalpha gene and calcyclin gene expressions induced by Allitridi provide valuable molecular evidence for the efficacy garlic in treating HGC as well as other diseases.

Allyl Compounds↗

Applying a highly specific and reproducible cDNA RDA method to clone garlic up-regulated genes in human gastric cancer cells.

AIM: To develop and optimize cDNA representational difference analysis (cDNA RDA) method and to identify and clone garlic up-regulated genes in human gastric cancer (HGC) cells. METHODS: We performed cDNA RDA method by using abundant double-stranded cDNA messages provided by two self-constructed cDNA libraries (Allitridi-treated and paternal HGC cell line BGC823 cells cDNA libraries respectively). Bam H I and Xho I restriction sites harbored in the library vector were used to select representations. Northern and Slot blots analyses were employed to identify the obtained difference products. RESULTS: Fragments released from the cDNA library vector after restriction endonuclease digestion acted as good marker indicating the appropriate digestion degree for library DNA. Two novel expressed sequence tags (ESTs) and a recombinant gene were obtained. Slot blots result showed a 8-fold increase of glia-derived nexin/protease nexin 1 (GDN/PN1) gene expression level and 4-fold increase of hepatitis B virus x-interacting protein (XIP) mRNA level in BGC823 cells after Allitridi treatment for 72h. CONCLUSION: Elevated levels of GDN/PN1 and XIP mRNAs induced by Allitridi provide valuable molecular evidence for elucidating the garlic's efficacies against neurodegenerative and inflammatory diseases. Isolation of a recombinant gene and two novel ESTs further show cDNA RDA based on cDNA libraries to be a powerful method with high specificity and reproducibility in cloning differentially expressed genes.

Adaptor Proteins, Signal Transducing↗

Effects of histone acetylation and DNA methylation on p21( WAF1) regulation.

Cell cycle progression is regulated by interactions between cyclins and cyclin-dependent kinases (CDKs). p21(WAF1) is one of the CIP/KIP family which inhibits CDKs activity. Increased expression of p21(WAF1) may play an important role in the growth arrest induced in transformed cells. Although the stability of the p21( WAF1) mRNA could be altered by different signals, cell differentiation and numerous influencing factors. However, recent studies suggest that two known mechanisms of epigenesis, i.e.gene inactivation by methylation in promoter region and changes to an inactive chromatin by histone deacetylation, seem to be the best candidate mechanisms for inactivation of p21( WAF1). To date, almost no coding region p21(WAF1) mutations have been found in tumor cells, despite extensive screening of hundreds of various tumors. Hypermethylation of the p21(WAF1) promoter region may represent an alternative mechanism by which the p21(WAF1/CIP1) gene can be inactivated. The reduction of cellular DNMT protein levels also induces a corresponding rapid increase in the cell cycle regulator p21(WAF1) protein demonstrating a regulatory link between DNMT and p21(WAF1) which is independent of methylation of DNA. Both histone hyperacetylation and hypoacetylation appear to be important in the carcinoma process, and induction of the p21(WAF1) gene by histone hyperacetylation may be a mechanism by which dietary fiber prevents carcinogenesis. Here, we review the influence of histone acetylation and DNA methylation on p21(WAF1) transcription, and affection of pathways or factors associated such as p 53, E2A, Sp1 as well as several histone deacetylation inhibitors.

Acetylation↗