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三氧化二砷在体外对神经母细胞瘤细胞核基质蛋白的影响
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作者 蔡志明 王子慧 +3 位作者 于鼎 罗明华 蔡广玲 余光银 《中华实验外科杂志》 CAS CSCD 北大核心 2004年第2期178-179,i002,共3页
目的 探讨三氧化二砷 (As2 O3 )在体外对小鼠神经母细胞瘤细胞系 (Neuro 2a)的作用 ,及其在早期对核基质蛋白和热休克伴随蛋白 (Hsc)在核基质蛋白中表达的影响。方法 用原位末端脱氧核苷转换酶标记法 (TUNEL)、DNA片段电泳观察As2 O3 ... 目的 探讨三氧化二砷 (As2 O3 )在体外对小鼠神经母细胞瘤细胞系 (Neuro 2a)的作用 ,及其在早期对核基质蛋白和热休克伴随蛋白 (Hsc)在核基质蛋白中表达的影响。方法 用原位末端脱氧核苷转换酶标记法 (TUNEL)、DNA片段电泳观察As2 O3 对Neuro 2a凋亡的影响。单、双向电泳和Western杂交法观察核基质蛋白分布和Hsc表达的影响。结果  2 μmol/LAs2 O3 能明显地抑制Neuro 2a细胞生长 ;As2 O3 处理 2 4h后 ,TUNEL分析法已能检测到Neuro 2a凋亡细胞 ,且能观察到核基质蛋白分布的改变及Hsc在核基质蛋白中的表达升高 ,但此时却不能观察到凋亡特征性DNA片段梯形带。结论 对As2 O3 的处理、核基质蛋白的分析较DNA片段检测更为敏感。Hsc蛋白有可能是一种凋亡早期指示蛋白。 展开更多
关键词 三氧化二砷 体外 神经母细胞 细胞核基质蛋白
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运用蛋白质组学研究三氧化二砷诱导K562细胞凋亡过程中核基质蛋白的变化
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作者 王子慧 于鼎 +1 位作者 郑杰 陈燕 《北京大学学报(医学版)》 CAS CSCD 北大核心 2005年第2期163-166,共4页
目的:探讨三氧化二砷 (As2O3 )在体外对慢性粒细胞性白血病细胞系K562细胞核基质蛋白的影响。方法:用DNA梯度电泳观察As2O3 作用后K562细胞凋亡的情况。单向、双向电泳观察As2O3 对K562细胞核基质蛋白分布影响。结果: 2. 5μmol/LAs2O3... 目的:探讨三氧化二砷 (As2O3 )在体外对慢性粒细胞性白血病细胞系K562细胞核基质蛋白的影响。方法:用DNA梯度电泳观察As2O3 作用后K562细胞凋亡的情况。单向、双向电泳观察As2O3 对K562细胞核基质蛋白分布影响。结果: 2. 5μmol/LAs2O3 处理 72h后,DNA电泳已能检测到发生凋亡的K562细胞,但早在As2O3 处理 48h时, 即能观察到核基质蛋白分布的改变,此时尚不能观察到凋亡特征性的DNA片段梯形条带。双向电泳可检测出 200多个核基质蛋白点,其中约 18个点与As2O3 处理相关。结论:As2O3 对K562细胞的影响是时间和剂量依赖性的。双向电泳检测As2O3 对K562核基质蛋白分布的影响较DNA梯度电泳检测更为敏感。核基质蛋白成分可能是砷作用的靶蛋白,并且可能是药物发挥抗癌作用的关键点之一。 展开更多
关键词 K562细胞凋亡 蛋白质组学研 细胞核基质蛋白 砷诱导 As2O3 白血病细胞 慢性粒细胞 电泳观察 电泳检测 三氧化二砷 mol/L DNA电泳 DNA片段 剂量依赖性 72h后 双向电泳 蛋白成分 抗癌作用 分布 特征性 蛋白 关键点
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联合检测尿HAase和NMP-22活性水平在膀胱癌诊断和手术后复发的研究 被引量:7
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作者 金美花 德伟林 魏秀鸿 《中国实验诊断学》 北大核心 2010年第8期1198-1199,共2页
目的探讨尿透明质酸酶(HAase)和细胞核基质蛋白22(NMP-22)活性水平联合检测对膀胱癌诊断和术后监测的意义。方法取自60位膀胱癌患者术前及术后尿液标本,取自对照组40人尿液用酶联免疫标记技术检测HAase和NMP-22。结果患者术前组中HAase... 目的探讨尿透明质酸酶(HAase)和细胞核基质蛋白22(NMP-22)活性水平联合检测对膀胱癌诊断和术后监测的意义。方法取自60位膀胱癌患者术前及术后尿液标本,取自对照组40人尿液用酶联免疫标记技术检测HAase和NMP-22。结果患者术前组中HAase和NMP-22水平是术后组的1.5倍(P<0.05),是对照组的2-4倍(P<0.05);HAase、NMP-22联合检测对膀胱癌诊断有较高的灵敏度(95.1%)、特异度(80.9%)和精确度(90.3%)。结论 HAase和NMP-22联合检测是诊断膀胱癌和手术评估的一种非侵入性、高灵敏度、高特异度的检测方法。 展开更多
关键词 尿透明质酸酶(HAase) 细胞核基质蛋白22(NMP-22) 膀胱肿瘤 膀胱肿瘤标记物
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Altered expression of nuclear matrix proteins in etoposide induced apoptosis in HL-60 cells 被引量:4
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作者 JinML ZhanP 《Cell Research》 SCIE CAS CSCD 2001年第2期125-134,共10页
The events of cell death and the expression of nuclear matrix protein (NMP) have been investigated in a promyelocytic leukemic cell line HL-60 induced with etoposide. By means of TUNEL assay, the nuclei displayed a ch... The events of cell death and the expression of nuclear matrix protein (NMP) have been investigated in a promyelocytic leukemic cell line HL-60 induced with etoposide. By means of TUNEL assay, the nuclei displayed a characteristic morphology change, and the amount of apoptotic cells increased early and reached maximun about 39% after treatment with etoposide for 2 h. Nucleosomal DNA fragmentation was observed after treatment for 4 h. The morphological change of HL-60 cells, thus, occurred earlier than the appearance of DNA ladder. Total nuclear matrix proteins were analyzed by 2-dimensional gel electrophoresis. Differential expression of 59 nuclear matrix proteins was found in 4 h etoposide treated cells. Western blotting was then performed on three nuclear matrix acssociated proteins, PML, HSC70 and NuMA. The expression of the suppressor PML protein and heat shock protein HSC70 were significantly upregulated after etoposide treatment, while NuMA, a nuclear mitotic apparatus protein, was down regulated. These results demonstrate that significant biochemical alterations in nuclear matrix proteins take place during the apoptotic process. 展开更多
关键词 Antineoplastic Agents Phytogenic Apoptosis DNA DNA Fragmentation Electrophoresis Gel Two-Dimensional Electrophoresis Polyacrylamide Gel ETOPOSIDE Gene Expression Regulation Neoplastic HL-60 Cells HSC70 Heat-Shock Proteins HSP70 Heat-Shock Proteins Humans In Situ Nick-End Labeling Neoplasm Proteins Nuclear Matrix Nuclear Proteins Transcription Factors Tumor Suppressor Proteins
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Phosphorylation and biosynthesis of high molecular weight proteins of tumor nuclear matrix
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作者 BAZARNOVA TM TV BULDYAEVA +2 位作者 LS FILATOVA SB AKOPOV IB ZBARSKY(NK Koltzov Institute of Developmental Biology, Russian Academy of Sciences, 26 Vavilov Street, 117344 Moscow,Russia) 《Cell Research》 SCIE CAS CSCD 1998年第3期195-207,共13页
Our previous studies showed a predominance of high molecular weight protein group in tumor nuclear matrices. Contrary to normal cells, proteins of this group are preferentially phosphorylated. Phosphoproteins of hepat... Our previous studies showed a predominance of high molecular weight protein group in tumor nuclear matrices. Contrary to normal cells, proteins of this group are preferentially phosphorylated. Phosphoproteins of hepatoma nuclear matrix are selectively subjected to rapid proteolysis. By alkali treatment and a monoclonal antibody against phosphotyrosyl residue the presence of two high molecular weight bands of phosphotyrosyl-containing proteins was detected in nuclear matrices of tumor but not of normal liver cells. High molecular weight protein group of tumor nuclear matrices revealed also a rapid turnover and preferential incorporation of labeled amino acids selectively inhibited by chloramphenicol. 展开更多
关键词 Animals Antigens Nuclear Hela Cells Humans Male MICE Mice Inbred C57BL Mice Inbred CBA Molecular Weight Neoplasms Nuclear Matrix Nuclear Proteins PHOSPHOPROTEINS PHOSPHORYLATION Phosphotyrosine RATS Rats Wistar Research Support Non-U.S. Gov't
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STUDY ON NUCLEAR MATRIX PROTEINS FROM HUMAN BREAST CARCINOMA
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作者 何谦 张淑群 +2 位作者 楚雍烈 贾晓黎 姜建涛 《Journal of Shanghai Second Medical University(Foreign Language Edition)》 2009年第2期73-76,共4页
Objective To investigate the marker protein of human breast carcinoma from nuclear matrix proteins (NMPs). Methods NMPs were injected subcutaneously into rabbit to get antiserum, which was used to detect the NMPs spec... Objective To investigate the marker protein of human breast carcinoma from nuclear matrix proteins (NMPs). Methods NMPs were injected subcutaneously into rabbit to get antiserum, which was used to detect the NMPs specificity for breast carcinoma. Results There was an apparent positive band (100 kD) in the NMPs of breast carcinoma, which did not exist in normal breast and other tumors that were detected.Conclusion One or one group of 100 kD NMPs were found to be related to human breast carcinoma, which may be involved in the carcinogenesis and development of human breast carcinoma and valuable for breast carcinoma diagnosis. 展开更多
关键词 breast carcinoma nuclear matrix proteins tumor marker
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The 5'-flanking cis-acting elements of the human ε-globin gene associates with the nuclear matrix and binds to the nuclear matrix proteins
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作者 YANZHIJIANG RUOLANQIAN 《Cell Research》 SCIE CAS CSCD 1998年第3期209-218,共10页
The nucleax mains attachment regions(MARs) and the binding nuclear matrix proteins in the 5’-flalildng cisacting elements of the humanε-globin gene have been examined. Using in vitro DNA-matrix binding assay,it has ... The nucleax mains attachment regions(MARs) and the binding nuclear matrix proteins in the 5’-flalildng cisacting elements of the humanε-globin gene have been examined. Using in vitro DNA-matrix binding assay,it has been shown that the positive stage-specific regulatory element (ε-PREII, -446bp-419bp) upstream of this gene could specifically associate with the nuclear matrix from K562 cells, indicating thatε-PREII mad be an erythroidspecilic facultstive MAR. In gel mobility shift assay and Southwestern blotting assal an eothroid-specific nuclear matrix protein (ε-NMPk) in K562 cells has been revealed to bind to this positive regulatory element (E-PREII). Furthermore, we demonstrated that the silencer (-392hp -177bp) uP8tream of the humanε-globin gene could associate with the nuclear matrices from K562, HEL and Raji cells. In addition, the nucleax matrix proteins prepared from these three cell lines could also bind to this silencer, suggesting that this silencer element linght be a constitutive nuclear mains attachment region (constitutive MAR). Our results demonstrated that the nucleax madrid and nuclear mains proteins lxilght play an important role in the regulation of the human 5-globin gene expression. 展开更多
关键词 Human ε-globin gene nuclear matrix attachment regions nuclear matrix proteins K562 cells
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