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电影记忆与经验重构——朱山坡小说《蛋镇电影院》重读
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作者 李雪梅 李平凡 《广西民族师范学院学报》 2022年第5期26-30,66,共6页
《蛋镇电影院》是朱山坡对20世纪80年代“浪漫”的独特抒写,作者通过虚构的“蛋镇电影院”,将自己少年时期在故乡的电影记忆从电影院、电影院工作人员、影迷的角度进行经验的重构,塑造了一批执着的“小镇畸人”形象。这既是一曲20世纪8... 《蛋镇电影院》是朱山坡对20世纪80年代“浪漫”的独特抒写,作者通过虚构的“蛋镇电影院”,将自己少年时期在故乡的电影记忆从电影院、电影院工作人员、影迷的角度进行经验的重构,塑造了一批执着的“小镇畸人”形象。这既是一曲20世纪80年代乡镇电影院的挽歌,也是一份乡镇的精神档案。 展开更多
关键词 电影 记忆 经验 蛋镇电影院》
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文学地理学视域下朱山坡小说的新南方书写--从“蛋镇”和“电影院”谈起
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作者 秦永芝 黄伟芯 《常州工学院学报(社会科学版)》 2022年第5期65-72,共8页
朱山坡作品中鲜明的地域特色和独特的叙事方式是研究者着重关注的对象,《风暴预警期》和《蛋镇电影院》是最能体现朱山坡小说这种特色的最新成果,这两部作品中共同出现了“蛋镇”和“电影院”这两个元素,二者的结合使朱山坡在小说创作... 朱山坡作品中鲜明的地域特色和独特的叙事方式是研究者着重关注的对象,《风暴预警期》和《蛋镇电影院》是最能体现朱山坡小说这种特色的最新成果,这两部作品中共同出现了“蛋镇”和“电影院”这两个元素,二者的结合使朱山坡在小说创作中不仅深入挖掘到南方地域的独特性和典型性,而且还找到了更合适的表现载体。从文学地理学的研究视域出发,可以发现,南方独特的地理、人文条件铸成了朱山坡小说的内在性格,“蛋镇”和“电影院”的联动使南方人物的性格命运仿佛被置于放大镜下去观察和审视,并在“电影院”的里与外糅合荒诞与现实、冷静与温情、夸张与写实,为南方叙事提供了新的可能。 展开更多
关键词 朱山坡 文学地理 新南方书写 蛋镇 电影院
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AOF1 is a histone H3K4 demethylase possessing demethylase activity-independent repression function 被引量:6
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作者 Ze Yang Jun Jiang +5 位作者 David M Stewart Shankang Qi Kenichi Yamane Jiwen Li Yi Zhang Jiemin Wong 《Cell Research》 SCIE CAS CSCD 2010年第3期276-287,共12页
LSD1 (KDM1 under the new nomenclature) was the first identified lysine-specific histone demethylase belonging to the flavin-dependent amine oxidase family. Here, we report that AOF1 (KDM1B under the new nomenclatur... LSD1 (KDM1 under the new nomenclature) was the first identified lysine-specific histone demethylase belonging to the flavin-dependent amine oxidase family. Here, we report that AOF1 (KDM1B under the new nomenclature), a mammalian protein related to LSD1, also possesses histone demethylase activity with specificity for H3K4mel and H3K4me2. Like LSD1, the highly conserved SWIRM domain is required for its enzymatic activity. However, AOF1 differs from LSD1 in several aspects. First, AOF1 does not appear to form stable protein complexes containing histone deacetylases. Second, AOF1 is found to localize to chromosomes during the mitotic phase of the cell cycle, whereas LSD1 does not. Third, AOF1 represses transcription when tethered to DNA and this repression activity is independent of its demethylase activity. Structural and functional analyses identified its unique N-terminal Zf-CW domain as essential for the demethylase activity-independent repression function. Collectively, our study identifies AOF1 as the second histone demethylase in the family of flavin-dependent amine oxidases and reveals a demethylase-independent repression function of AOF1. 展开更多
关键词 AOF1 histone H3K4 demethylase CHROMATIN REPRESSION Zf-CW
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Epigenetic Repression of SATB1 by Polycomb Group Protein EZH2 in Epithelial Cells 被引量:1
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作者 Chih-chuan Liang 《Chinese Medical Sciences Journal》 CAS CSCD 2010年第4期199-205,共7页
Objective To study the regulatory mechanism of SATB1 repression in cells other than T cells or erythroid cells, which have high expression level of SATB1. Methods HeLa epithelial cells were treated with either histone... Objective To study the regulatory mechanism of SATB1 repression in cells other than T cells or erythroid cells, which have high expression level of SATB1. Methods HeLa epithelial cells were treated with either histone deacetylase inhibitor (HDACi) trichostatin A (TSA) or DNA methylation inhibitor 5-Aza-C before detecting SATB1 expression. Luciferase reporter system was applied to measure effects of EZH2 on SATB1 promoter activity. Over-expression or knockdown of EZH2 and subsequent quantitative reverse transcription-polymerase chain reaction were performed to determine the effect of this Polycomb group protein on SATB1 transcription. Chromatin immunoprecipitation (ChIP) assay was applied to measure enrichment of EZH2 and trimethylated H3K27 (H3K27me3) at SATB1 promoter in HeLa cells. K562 cells and Jurkat cells, both having high-level expression of SATB1, were used in the ChIP experiment as controls. Results Both TSA and 5-Aza-C increased SATB1 expression in HeLa cells. Over-expression of EZH2 reduced promoter activity as well as the mRNA level of SATB1, while knockdown of EZH2 apparently enhanced SATB1 expression in HeLa cells but not in K562 cells and Jurkat cells. ChIP assay results suggested that epigenetic silencing of SATB1 by EZH2 in HeLa cells was mediated by trimethylation modification of H3K27. In contrast, enrichment of EZH2 and H3K27me3 was not detected within proximal promoter region of SATB1 in either K562 or Jurkat cells. Conclusion SATB1 is a bona fide EZH2 target gene in HeLa cells and the repression of SATB1 by EZH2 may be mediated by trimethylation modification on H3K27. 展开更多
关键词 SATB 1 EZH2 Polycomb group protein gene silencing trimethylated H3K27
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Coordinated regulation of active and repressive histone methylations by a dual-specificity histone demethylase ceKDM7A from Caenorhabditis elegans 被引量:2
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作者 Hanqing Lin Yiqin Wang +11 位作者 Yanru Wang Feng Tian Pu Pu Yi Yu Hailei Mao Ying Yang Ping Wang Lulu Hu Yan Lin Yi Liu Yanhui Xu Charlie Degui Chen 《Cell Research》 SCIE CAS CSCD 2010年第8期899-907,共9页
H3K9me2 and H3K27me2 are important epigenetic marks associated with transcription repression, while H3K4me3 is associated with transcription activation. It has been shown that active and repressive histone methylation... H3K9me2 and H3K27me2 are important epigenetic marks associated with transcription repression, while H3K4me3 is associated with transcription activation. It has been shown that active and repressive histone methylations distribute in a mutually exclusive manner, but the underlying mechanism was poorly understood. Here we identified ceKDM7A, a PHD (plant homeodomain)- and JmjC domain-containing protein, as a histone demethylase specific for H3K9me2 and H3K27me2. We further demonstrated that the PHD domain of ceKDM7A bound H3K4me3 and H3K4me3 co-localized with ceKDM7A at the genome-wide level. Disruption of the PHD domain binding to H3K4me3 reduced the demethylase activity in vivo, and loss of ceKDM7A reduced the expression of its associated target genes. These results indicate that ceKDM7A is recruited to the promoter to demethylate H3K9me2 and H3K27me2 and activate gene expression through the binding of the PHD domain to H3K4me3. Thus, our study identifies a dual-specificity histone demethylase and provides novel insights into the regulation of histone methylation. 展开更多
关键词 KDM7A DEMETHYLASE H3K9me2 H3K27me2 PHD JMJC HISTONE methylation
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The Arabidopsis PRCl-like ring-finger proteins are necessary for repression of embryonic traits during vegetative growth 被引量:19
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作者 Donghong Chen Anne Molitor +1 位作者 Chunlin Liu Wen-Hui Shen 《Cell Research》 SCIE CAS CSCD 2010年第12期1332-1344,共13页
Polycomb group genes play crucial roles in the maintenance of the transcriptionally silenced state of genes for proper cell differentiation in animals and plants. While components of the polycomb repressive complex2 ... Polycomb group genes play crucial roles in the maintenance of the transcriptionally silenced state of genes for proper cell differentiation in animals and plants. While components of the polycomb repressive complex2 (PRC2) are evolutionarily conserved and their functions are extensively studied in plants, PRCI differs considerably between animals and plants, and its functions in plants are as yet not well described. Previous studies have identified the Arabidopsis AtRINGla and AtRINGlb as homologues of the animal PRC1 subunit RING1. Here, we show that the Atringla Atringlb double mutant exhibits derepression of embryonic traits during vegetative growth. Accordingly, several key regulatory genes involved in embryogenesis and stem cell activity are ectopically expressed in the mutant. Furthermore, we show that the mutant phenotypes and increased expression of regulatory genes are enhanced by the PRC2 mutant c/f. Finally, we show that three homologues of the animal PRCl-subunit ring-finger protein BMI1, AtBMIIa, AtBMIlb and AtBMIlc, can bind with AtRINGla or AtRINGIb, and in addition, AtBMIlc can bind with LHP1. The Atbmila Atbmilb double mutant shows derepression of embryonic traits similar to that of the Atringla Atringlb double mutant. Interestingly, expression levels of AtBMIla, AtBMIlb and AtBMIlc are elevated in the Atringla Atringlb mutant and those of AtBMIlc, AtRINGla and AtRINGlb are elevated in the Atbmila Atbmilb mu- tant, suggesting a self-regulatory feedback mechanism. Taken together, our results illuminate crucial functions of the PRCl-like ring-finger components in stable repression of embryonic traits and regulatory genes for proper somatic growth. 展开更多
关键词 POLYCOMB PRC 1 RING 1 somatic embrvogenesis ARABIDOPSIS
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THE ROLE OF CONNEXIN 43 GENE IN ACUPUNCTURE ANALGESIA
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作者 余炜昶 黄光英 +1 位作者 张明敏 王伟 《World Journal of Acupuncture-Moxibustion》 2007年第3期17-23,共7页
Objective To and connexin 43. Methods investigate the possible relationship between the analgesic effect of acupuncture Connexin 43 gene knock-out mice were randomly divided into 4 groups: a wide type (WT) control ... Objective To and connexin 43. Methods investigate the possible relationship between the analgesic effect of acupuncture Connexin 43 gene knock-out mice were randomly divided into 4 groups: a wide type (WT) control group, a WT acupuncture group, a heterozygous (HT) control group and HT acupuncture group. Hot-plate test and writhing response induced by acetic acid were used for investigating the different analgesic effect of acupuncture on HT and WT mice. Results There was no significant difference in the basic pain threshold value between HT and WT mice (P 〉0.05). Acupuncture could significantly increase the pain threshold value, prolong the latency period of writhing body and decrease the number of writhing body as compared with pre-acupuncture in WT and HT mice (P 〈 0.01 or P 〈 0.05). The pain threshold, latency period of writhing and number of writhing body in HT mice were less than WT mice post-acupuncture (P〈0.05). Conclusion Connexin 43 gene knock-out might partially inhibit the analgesic effect of acupuncture, suggesting that connexin 43 is possibly related with meridians and the effect of acupuncture. 展开更多
关键词 Connexin 43/acupuncture effect Pain Threshold/acupuncture effect Acupuncture Analgesia
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AtFKBP53 is a histone chaperone required for repression of ribosomal RNA gene expression in Arabidopsis 被引量:7
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作者 Hong Li Sheng Luan 《Cell Research》 SCIE CAS CSCD 2010年第3期357-366,共10页
Chromatin structure is important for controlling gene expression, but mechanisms underlying chromatin remodel- ing are not fully understood. Here we report that an FKBP (FK506 binding protein) type immunophilin, AtF... Chromatin structure is important for controlling gene expression, but mechanisms underlying chromatin remodel- ing are not fully understood. Here we report that an FKBP (FK506 binding protein) type immunophilin, AtFKBP53, possesses histone chaperone activity and is required for repressing ribosomal gene expression in Arabidopsis. The At- FKBP53 protein is a multidomain FKBP with a typical peptidylprolyl isomerase (PPIase) domain and several highly charged domains. Using nucleosome assembly assays, we showed that AtFKBP53 has histone chaperone activity and the charged acidic domains are sufficient for the activity. We show that AtFKBP53 interacts with histone H3 through the acidic domains, whereas the PPIase domain is dispensable for histone chaperone activity or histone binding. Ri- bosomal RNA gene (18S rDNA) is overexpressed when AtFKBP53 activity is reduced or eliminated in Arabidopsis plants. Chromatin immunoprecipitation assay showed that AtFKBP53 is associated with the 18S rDNA gene chro- matin, implicating that AtFKBP53 represses rRNA genes at the chromatin level. This study identifies a new histone chaperone in plants that functions in chromatin remodeling and regulation of transcription. 展开更多
关键词 ARABIDOPSIS IMMUNOPHILIN CHROMATIN histone chaperone ribosomal RNA nucleosome assembly
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Inhibition of SIRT1 Increases EZH2 Protein Level and Enhances the Repression of EZH2 on Target Gene Expression
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作者 Chih-chuan Liang 《Chinese Medical Sciences Journal》 CAS CSCD 2011年第2期77-84,共8页
Objective To study the regulatory roles of SIRT1 on EZH2 expression and the further ef-fects on EZH2's repression of target gene expression. Methods The stable SIRT1 RNAi and Control RNAi HeLa cells were establish... Objective To study the regulatory roles of SIRT1 on EZH2 expression and the further ef-fects on EZH2's repression of target gene expression. Methods The stable SIRT1 RNAi and Control RNAi HeLa cells were established by in-fection with retroviruses expressing shSIRT1 and shLuc respectively followed by puromycin selection. EZH2 protein level was detected by Western blot in either whole cell lysate or the fractional cell extract. Reverse transcription-polymerase chain reaction was performed to detect the mRNA level of EZH2. Cycloheximide was used to treat SIRT1 RNAi and Control RNAi cells for protein stability assay. Chromatin immunoprecipitation (ChIP) assay was applied to measure enrichment of SIRT1, EZH2, and trimethylated H3K27 (H3K27me3) at SATB1 promoter in SIRT1 RNAi and Control RNAi cells. Results Western blot results showed that EZH2 protein level increased upon SIRT1 de-pletion. Fractional extraction results showed unchanged cytoplasmic fraction and increased chromatin fraction of EZH2 protein in SIRT1 RNAi cells. The mRNA level of EZH2 was not affected by knockdown of SIRT1. SIRT1 recruitment was not detected at the promoter region of EZH2 gene locus. The protein stability assay showed that the protein stability of EZH2 increases upon SIRT1 knockdown. Upon SIRT1 depletion, EZH2 and H3K27me3 recruitment at SATB1 promoter increases and the mRNA level of SATB1 decreases. Conclusions Depletion of SIRT1 increases the protein stability of EZH2. The regulation of EZH2 protein level by SIRT1 affects the repressive effects of EZH2 on the target gene expres-sion. 展开更多
关键词 SIRT1 EZH2 Polycomb repression complex trimethylated H3K27
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The adenoviral E1A protein relieves gene repression by receptors in v/vo displaces corepressors and unliganded thyroid hormone
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作者 Yukiyasu Sato Andrew Ding +4 位作者 Rachel A Heimeier Ahmed F Yousef Joe S Mymryk Paul G Walfish Yun-Bo Shi 《Cell Research》 SCIE CAS CSCD 2009年第6期783-792,共10页
The human adenovirus type 5 early region 1A (E1A) is one of two oncogenes present in the adenovirus genome and functions by interfering with the activities of cellular regulatory proteins. The E1A gene is alternativ... The human adenovirus type 5 early region 1A (E1A) is one of two oncogenes present in the adenovirus genome and functions by interfering with the activities of cellular regulatory proteins. The E1A gene is alternatively spliced to yield five products. Earlier studies have revealed that E1A can regulate the function of thyroid hormone (T3) receptors (TRs). However, analysis in yeast compared with transfection studies in mammalian cell cultures yields surprisingly different effects. Here, we have examined the effect of E1A on TR function by using the frog oocyte in vivo system, where the effects of E1A can be studied in the context of chromatin. We demonstrate that different isoforms of E1A have distinct effects on TR function. The two longest forms inhibit both the repression by unliganded TR and activation by T3-bound TR. We further show that E1A binds to unliganded TR to displace the endogenous corepressor nuclear receptor corepressor, thus relieving the repression by unliganded TR. On the other hand, in the presence of T3, E1A inhibits gene activation by T3-bound TR indirectly, through a mechanism that requires its binding domain for the general coactivator p300. Taken together, our results thus indicate that E1A affects TR function through distinct mechanisms that are dependent upon the presence or absence of T3. 展开更多
关键词 adenoviral E1A thyroid hormone receptor COREPRESSOR COACTIVATOR CHROMATIN
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Chromodomain protein CDYL is required for transmission/restoration of repressive histone marks 被引量:2
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作者 Yongqing Liu Shumeng Liu +10 位作者 Shuai Yuan Huajing Yu Yu Zhang Xiaohan Yang Guojia Xie Zhe Chen Wanjin Li Bosen Xu Luyang Sun Yongfeng Shang Jing Liang 《Journal of Molecular Cell Biology》 SCIE CAS CSCD 2017年第3期178-194,共17页
Faithful transmission or restoration of epigenetic information such as repressive histone modifications through generations is crit- ical for the maintenance of cell identity. We report here that chromodomain Y-like p... Faithful transmission or restoration of epigenetic information such as repressive histone modifications through generations is crit- ical for the maintenance of cell identity. We report here that chromodomain Y-like protein (CDYL), a chromodomain-containing transcription corepressor, is physically associated with chromatin assembly factor 1 (CAF-1) and the repiicative heUcase MCM complex. We showed that CDYL bridges CAF-1 and MCM, facilitating histone transfer and deposition during DNA replication. We demonstrated that CDYI. recruits histone-modifying enzymes G9a, SETDB1, and EZH2 to replication forks, leading to the addition of H3Kgme2/3 and H3K27me2/3 on newly deposited histone H3. Significantly, depletion of CDYL impedes early S phase progres- sion and sensitizes cells to DNA damage. Our data indicate that CDYL plays an important role in the transmission/restoration of repressive histone marks, thereby preserving the epigenetic landscape for the maintenance of cell identity. 展开更多
关键词 epigenetic inheritance histone modification CDYL CAF-1 MCM
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