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1.
细胞外基质相关基因在大鼠肝再生中表达模式分析   总被引:1,自引:1,他引:0  
李红蕾  陈晓光  张富春  马纪  徐存拴 《遗传》2008,30(3):333-340
细胞外基质具有维持细胞极性、调节细胞粘附、增殖、组织器官形态、发生、分化等功能。为了进一步在基因转录水平了解细胞外基质在大鼠肝再生中变化和作用, 用搜集网站资料和查阅相关论文等方法获得细胞外基质基因, 用Rat Genome 230 2.0芯片检测它们在大鼠再生肝中表达情况, 用真、假手术比较方法确定肝再生相关基因。初步证实上述97个基因与肝再生相关。其中, 肝再生启动(部分肝切除(parital hepatectomy, PH)后0.5~4 h)、G0/G1过渡(PH后4~6 h)、细胞增殖(PH后6~66 h)、细胞分化和组织结构功能重建(PH后72~168 h)等4个阶段起始表达的基因数为49、19、73、5, 基因总表达的次数为84、51、369、144, 表明相关基因主要在肝再生启动阶段起始表达, 在不同阶段发挥作用。它们表达的相似性分为均上调、上调占优势、均下调、下调占优势、上调和下调相近等5类, 涉及38、21、21、10和7个基因, 共上调411次, 下调186次, 分为24种表达模式, 表明肝再生中细胞生理生化活动具有阶段性、多样性和复杂性。根据细胞外基质相关基因在肝再生中表达变化推测, 肝再生前期纤粘连蛋白形成相关基因表达增强, 肝再生中期胶原形成相关基因表达增强。  相似文献   

2.
肌细胞分化基因与大鼠肝再生的相关性分析   总被引:1,自引:0,他引:1  
肌细胞是组织器官的重要组成部分。为在基因转录水平了解肌细胞分化相关基因在大鼠肝再生中的作用,本文用搜集网站资料和查阅相关论文等方法获得上述基因.用Rat Genome2302.0芯片检测它们在大鼠肝再生(liver regeneration,LR)中表达情况,用比较真、假手术基因表达的差异性方法确定肝再生相关基因。初步证实上述基因中52个基因与肝再生相关。根据肝再生中基因表达的时间相关性将上述基因聚合为0.5-1h;2—12h;16、30、42、96h;18—24、36、48—60h;66—72、120-168h等5类,表达上调和下调的基因数分别为8和10,24和8,21和24,53和64,28和36。它们表达的相似性分为均上调、上调占优势、均下调、下调占优势、上调和下调次数相近等5类,涉及15、10、17、7和3个基因,共上调表达143次、下调136次,分为8类表达方式。表明肌细胞分化相关基因表达变化多样和复杂。根据上述结果推测,肝再生中成肌细胞和平滑肌细胞分化增强:骨骼肌和心肌细胞分化相关基因参与肝再生的生理生化活动。  相似文献   

3.
为了解8种肝脏细胞的缺血反应相关基因与大鼠肝再生的相关性, 用percoll密度梯度离心和免疫磁珠方法分离大鼠部分肝切除后不同时间(0, 2, 6, 12, 24, 30, 36, 72, 120和168 h)再生肝中的8种细胞, 用Rat Genome 230 2.0芯片等方法检测上述8种细胞的缺血反应相关基因在大鼠肝再生中表达变化, 用生物学和系统生物学等方法分析上述基因与大鼠肝再生的相关性. 结果显示, 缺血反应主要在肝再生启动阶段及进展阶段前期发挥作用, 且上调占优势, 可刺激il6, tnf等肝再生关键基因表达; 肝星形细胞、树突状细胞中的缺血反应相关基因具有表达的相似性. 缺血反应能推动肝再生的顺利进行, 但胆管上皮细胞的基因表达情况特殊, 值得进一步研究.  相似文献   

4.
脂肪细胞分化相关基因在大鼠再生肝中表达变化   总被引:3,自引:0,他引:3  
肝脏由多种细胞构成,肝再生与细胞分化密切相关,细胞分化受基因转录水平调控。为在基因转录水平了解脂肪细胞分化基因在大鼠肝再生中作用,本文用搜集网站资料和查阅相关论文等方法获得上述基因,用Rat Genome2302.0芯片检测它们在大鼠肝再生(liver regeneration,LR)中表达情况,将三次检验结果相同或相似、在肝再生中表达变化2倍以上、真手术组和假手术组相比差异显著的基因视为肝再生相关基因。初步证实上述基因中75个基因与肝再生相关。肝再生启动(PH后0.5-4h)、G0/G1过渡(PH后4-6h)、细胞增殖(PH后6-66h)、细胞分化和组织结构功能重建(PH后72-168h)等四个阶段起始表达的基因数为44、13、30和1;基因的总表达次数为88、58、302和90。表明相关基因主要在肝再生启动阶段起始表达,在不同阶段发挥作用。它们共表达上调313次、下调167次,分为43种表达方式。表明肝再生中脂肪细胞发生和分化相关基因活动多样和复杂。根据本文研究结果推测,上述基因不仅调节脂肪细胞分化,而且参与肝再生的生理生化活动。  相似文献   

5.
为了解大鼠肝再生中8种肝脏细胞的丝氨酸族氨基酸代谢相关基因转录谱, 文章用Percoll密度梯度离心结合免疫磁珠分选分离大鼠的8种再生肝细胞, 用Rat Genome 230 2.0芯片等检测它们中丝氨酸族氨基酸代谢相关基因的表达变化, 用Cluster和Treeview等软件分析上述基因在肝再生中表达模式, 用生物信息学和系统生物学等方法分析上述细胞中丝氨酸族氨基酸代谢活动。结果表明, 在27个发生有意义表达变化的基因中, 肝细胞、胆管上皮细胞、卵圆细胞、肝星形细胞、窦内皮细胞、库普弗细胞、陷窝细胞、树突状细胞的基因数分别为13、16、11、14、13、11、12、14, 相应细胞的上调、下调和上/下调的基因数分别为7、6和0, 2、10和4, 2、8和1, 8、3和3, 6、5和2, 4、6和1, 2、10和0, 6、6和2。总的来看, 肝再生中各细胞的表达下调基因占优势, 但在肝再生启动阶段, 肝星形细胞和窦内皮细胞的表达上调基因占优势。上述丝氨酸族氨基酸代谢相关基因转录谱预示丝氨酸族氨基酸的合成主要在肝再生启动阶段的肝细胞、肝星形细胞、窦内皮细胞和库普弗细胞中增强, 它们的降解主要在肝再生进展阶段的肝细胞、胆管上皮细胞、陷窝细胞和树突状细胞中进行。  相似文献   

6.
为在基因转录水平了解蛋白质代谢、折叠、运输、定位、装配相关基因在大鼠肝再生中表达情况和作用,本文用搜集网站资料和查阅相关论文等方法获得上述基因,用Rat Genome 2302.0芯片检测它们在大鼠再生肝中表达情况,用真、假手术比较方法确定肝再生相关基因。初步证实上述基因中1147个基因与肝再生相关。其中,参与蛋白质代谢、折叠、运输、定位和装配的基因以上调表达为主;参与蛋白质代谢的基因主要在部分肝切除(partial hepatectomy,PH)后0.5-1h和16-30h起始表达;0.5-12h表达的促进蛋白降解基因数多于促进蛋白积累基因数,而16-48h表达的促进蛋白质积累基因数显著多于促进蛋白质降解基因数;蛋白质合成相关基因在肝再生的16、24、42和66h表达上调较多,在42h最多;几乎在整个肝再生中蛋白质降解相关基因表达上调,在早、前期较多,在后期较少;蛋白质折叠相关基因在2、16-24、42、66、72和168h表达上调较多,在66h最多;蛋白质运输和定位相关基因在整个肝再生中表达上调,在66h表达上调最多;蛋白质装配相关基因在96h前均表达上调,其中,12h表达上调基因最多。根据上述结果推测,在肝再生中期蛋白质合成旺盛,几乎整个肝再生中蛋白质降解、折叠、运输定位和装配活动活跃。  相似文献   

7.
用抑制性消减杂交方法(SSH)构建了短间隔连续部分肝切除(SISPH)再生肝的消减cDNA文库, 从中筛选出了551个与肝再生相关的基因, 把这些基因制成cDNA 微阵列(cDNA芯片), 分析它们在0 h正常肝及 4, 36, 72, 96 h再生肝中的动态变化发现, 185个基因至少在肝再生的一个时间点表达变化达2倍以上; 185个基因中的86个属未报道的基因, 99个为已报道的基因, 但在此之前尚不知道它们与肝再生有关; 185个基因中的103个在肝再生中表现上调表达, 82个表现下调表达. 用GeneMath软件和GeneSpring方法对这些基因在肝再生中的表达轮廓进行聚类分析表明, 基因的表达模式可分为8组, 即早期诱导、中期诱导、晚期诱导、持续诱导、早期抑制、中期抑制、晚期抑制和持续抑制. 与一次性部分肝切除(PH)相比, 41个基因在SISPH中特异性表达, 其他基因在两个模型中的表达趋势相同, 但在各时间点的表达丰度有差异. 综合分析可见, 抑制性消减杂交技术与基因芯片技术相结合是研究再生肝差异表达基因的有效方法; 肝再生中上调表达的基因多于下调表达的基因; 早期诱导的基因多于晚期诱导的基因; 诱导表达幅度大的基因少于诱导表达幅度小的基因.  相似文献   

8.
生长激素(growth hormone,GH)信号通路对机体生长发育具有重要的调控作用。GH通过与特异性膜表面受体结合,启动下游一系列信号通路反应,进而调控细胞增殖、分化和迁移,防止细胞凋亡等。GH对细胞增殖的调控机制一直以来都是研究的热点,但部分肝切除(partial hepatectomy,PH)后,生长激素相关的信号通路是否会活化,调控相关基因的表达,从而促进肝实质细胞增殖,尚未见报道。本文以percoll密度梯度离心结合磁珠分离的大鼠再生肝的肝细胞为材料,采用Rat Genome 230 2.0芯片与生物信息学相结合的方法,研究GH信号通路对肝再生的调控作用。结果表明,大鼠再生肝的肝细胞中22种基因与GH信号通路相关,其中,Gh1、Jak3、Stat3等14种基因表达上调,Irs3、Ghr、Mras等8种基因表达下调。谱函数(Et)分析基因表达变化预示的细胞增殖活动和信号转导活性表明,GH信号通路的信号传导活性在大鼠肝再生的2~72 h强于对照,所调节的肝细胞增殖活动在6~72 h也强于对照。综上所述,GH信号通路促进大鼠再生肝的肝细胞增殖。  相似文献   

9.
生长激素(growth hormone, GH)信号通路对机体生长发育具有重要的调控作用。GH通过与特异性膜表面受体结合,启动下游一系列信号通路反应,进而调控细胞增殖、分化和迁移,防止细胞凋亡等。GH对细胞增殖的调控机制一直以来都是研究的热点,但部分肝切除(partial hepatectomy,PH)后,生长激素相关的信号通路是否会活化,调控相关基因的表达,从而促进肝实质细胞增殖,尚未见报道。本文以percoll密度梯度离心结合磁珠分离的大鼠再生肝的肝细胞为材料,采用Rat Genome 230 20芯片与生物信息学相结合的方法,研究GH信号通路对肝再生的调控作用。结果表明,大鼠再生肝的肝细胞中22种基因与GH信号通路相关,其中,Gh1、Jak3、Stat3等14种基因表达上调,Irs3、Ghr、Mras等8种基因表达下调。谱函数(Et)分析基因表达变化预示的细胞增殖活动和信号转导活性表明,GH信号通路的信号传导活性在大鼠肝再生的2~72 h强于对照,所调节的肝细胞增殖活动在6~72 h也强于对照。综上所述,GH信号通路促进大鼠再生肝的肝细胞增殖。  相似文献   

10.
大鼠再生肝中hsbp1、hsf1、hsf2、hsp70表达水平改变的分析   总被引:2,自引:0,他引:2  
在克隆了大鼠热休克因子结合蛋白1基因(hsbp1)全长cDNA基础上,进一步分析它在肝再生中作用。用SD纯系大鼠为材料,按Higgens等方法建立大鼠部分肝切除(PH)模型;用原位杂交等方法分析hsbp1在肝再生中表达变化;用基因表达谱芯片分析hsbp1、hsf1、hsf2和hsp70在肝再生中表达变化。原位杂交和基因表达谱芯片分析表明,PH后6h和66-144h,hsbp1表达发生了有意义上调;8-16h,hsf1表达发生了有意义上调;2-16h,hsf2表达发生了有意义上调;0.5-24h,hsp70表达发生了有意义上调。假手术(只打开腹腔和翻动肝叶,但不进行部分肝切除)后0.5-2h,hsbp1表达发生了有意义下调;8-16h,hsf1表达发生了有意义上调;0-144h,hsf2未发生有意义表达变化;0.5-30h,hsp70表达发生了有意义上调。根据实验结果推测,PH后hsbp1表达上调可增加细胞内HSBP1量,促进生长、发育、分化相关基因表达和再生肝的组织结构功能重建;(假)手术后hsbp1表达下调可减少细胞内HSBP1量,有利于HSF1上调hsp70表达,提高机体和肝脏抗损伤能力。  相似文献   

11.
Guo GB  Xu CS 《Amino acids》2008,34(4):597-604
In this study, 55 of the organic acid metabolism-involved genes were primarily confirmed to be associated with liver regeneration (LR) by bioinformatics and gene expression profiling analysis. Number of the initially and totally expressed genes occurring in initiation phase of LR, G0/G1, cell proliferation, cell differentiation and liver tissue structure-function reconstruction were 21, 5, 33, 1 and 40, 20, 174, 44, respectively, illustrating that genes were initially expressed mainly in initiation stage, and worked in different phases. 151 times up-regulation and 114 times down-regulation as well as 14 types of expression patterns showed the diversification and complication of genes expression changes. It is inferred from the above gene expression changes and patterns that acetate biosynthesis enhanced at forepart, propionate biosynthesis at forepart, prophase and early metaphase, pyruvate biosynthesis at forepart, metaphase and anaphase, succinate biosynthesis at forepart and anaphase; malate biosynthesis in metaphase and N-acetylneuraminate biosynthesis at 36, 66 and 96 h. Whereas, carnitine biosynthsis attenuates at forepart and prophase, enhancement at middle metaphase; isocitrate in the forepart, quinolinate at forepart and early metaphase, creatine at early metaphase and fumarate at anaphase perform the restrained biosynthesis, respectively; catabolisms of propionate and pyruvate were depressed in metaphase.  相似文献   

12.
Xu CS  Chang CF 《Amino acids》2008,34(1):91-102
Summary. Amino acids (AA) are components of protein and precursors of many important biological molecules. To address effects of the genes associated with metabolism and transport of AA and their derivatives during rat liver regeneration (LR), we firstly obtained the above genes by collecting databases data and retrieving related thesis, and then analyzed their expression profiles during LR using Rat Genome 230 2.0 array. The LR-associated genes were identified by comparing the gene expression difference between partial hepatectomy (PH) and sham-operation (SO) rat livers. It was approved that 134 genes associated with metabolism of AA and their derivatives and 26 genes involved in transport of them were LR-associated. The initially and totally expressing number of these genes occurring in initial phase of LR (0.5–4 h after PH), G0/G1 (4–6 h after PH), cell proliferation (6–66 h after PH), cell differentiation and structure-function reconstruction of liver tissue (72–168 h after PH) were respectively 76, 17, 79, 5 and 162, 89, 564, 195, illustrating that these LR-associated genes were initially expressed mainly in initial stage, and functioned in different phases. Frequencies of up-regulation and down-regulation of them being separately 564 and 357 demonstrated that genes up-regulated outnumbered those down-regulated. Categorization of their expression patterns into 22 types implied the diversity of cell physiological and biochemical activities. According to expression changes and patterns of the above-mentioned genes in LR, it was presumed that histidine biosynthesis in the metaphase and anaphase, valine metabolism in the anaphase, and metabolism of glutamate, glutamine, asparate, asparagine, methionine, alanine, leucine and aromatic amino acid almost were enhanced in the whole LR; as for amino acid derivatives, transport of neutral amino acids, urea, γ-aminobutyric acid, betaine and taurine, metabolism of dopamine, heme, S-adenosylmethionine, thyroxine, and biosynthesis of hydroxyproline, nitric oxide, orinithine, polyamine, carnitine, selenocysteine were augmented during the entire liver restoration. Above results showed that metabolism and transport of AA and their derivates were necessary in liver regeneration. Authors’ address: Prof. Dr. C. S. Xu, College of Life Science, No. 46, Jianshe RD, Henan, Xinxiang 453007, China  相似文献   

13.
A new method is suggested for the estimation of cell junction adhesion in the liver. It was shown that simple (spacing) junctions of hepatocytes consisted of low and high adhesive parts (sites). The hepatocyte junctions were positioned in the following sequence according to the increase of their adhesive durability; 1) low adhesive sites of simple junction and stude like junctions; 2) high adhesive sites of simple junction and desmosomes; 3) zonulae adherentes; 4) gap and tight junctions.  相似文献   

14.
Small gap junction plaques are associated with tight junction strands in some cell types including hepatocytes and it is thought that they may be closely related to tight junctions and the establishment of cell polarity. In order to examine roles of gap junctions in regulating expression and structure of tight junctions, we transfected human Cx32 cDNA into immortalized mouse hepatocytes (CHST8 cells) which lack endogenous Cx32 and Cx26. Immunocytochemistry revealed that endogenous integral tight junction protein occludin was strongly localized and was colocalized with Cx32 at cell borders in transfectants, whereas neither was detected in parental cells. In Northern blots, mRNAs encoding occludin and the other integral tight junction proteins, claudin-1 and -2, were induced in the transfectants compared to parental cells. In Western blots, occludin protein was increased in the transfectants compared to parental cells, and binding of occludin to Cx32 protein was demonstrated by immunoprecipitation. In freeze fracture of the transfectants, tight junction strands were more numerous and complex compared to parental cells, and small gap junction plaques appeared within induced tight junction strands. Nevertheless, no change in barrier function of tight junctions was observed. These results indicate that in hepatocytes, gap junction, and tight junction expression are closely coordinated, and that Cx32 may play a role in regulating occludin expression.  相似文献   

15.
Under the action of supplemental calcium, H6 mouse embryonal carcinoma cell aggregates undergo compaction, a morphological phenomenon similar to mouse embryonic compaction. Formation of various types of cell junctions, especially gap junctions, is associated with compaction of the embryo and we sought to analyze the pattern of junction formation during aggregation and compaction of H6 cells. At 24 hr of aggregation, gap junctions were abundant in both uncompacted and compacted aggregates but quantitative analysis of freeze fracture replicas of these junctions showed a 20-fold increase in the size of the largest gap junctions in compacted aggregates. Such a difference in size could even be detected at 12 hr of aggregation. Tight junctions were not normally formed in 12 hr aggregates but initial stages of tight junction formation could be noticed in 12 hr compacted aggregates. More definitive tight junctions and desmosomes were evident only after 48 hr of aggregation. Thus we have observed that both uncompacted and compacted aggregates can form gap junctions at similar frequencies, suggesting that cell flattening, which contributes to the compacted morphology, is not a requisite for gap junctions. Likewise, generation of the compacted morphology seems to be independent of gap junction formation. This supports the idea that compaction in embryonal carcinoma cells results from calcium-induced cell flattening, probably through the mobilization of cytoskeletal elements. Calcium-dependent features of H6 cell aggregation and compaction enables the independent analysis of separate steps in compaction.  相似文献   

16.
Human fetal primary tooth germs in the cap stage were fixed with a glutaraldehyde-formaldehyde mixture, and formative processes of tight and gap junctions of the inner enamel epithelium and preameloblasts were examined by means of freeze-fracture replication. Chains of small clusters of particles on the plasma membrane P-face of the inner enamel epithelium and preameloblasts were the initial sign of tight junction formation. After arranging themselves in discontinuous, linear arrays in association with preexisting or forming gap junctions, these particles later began revealing smooth, continuous tight junctional strands on the plasma membrane P-face and corresponding shallow grooves of a similar pattern on the E-face. Although they exhibited evident meshwork structures of various extents at both the proximal and distal ends of cell bodies, they formed no zonulae occludentes. Small assemblies of particles resembling gap junctions were noted at points of cross linkage of tight junctional strands; but large, mature gap junctions no longer continued into the tight junction meshwork structure. Gap junctions first appeared as very small particle clusters on the plasma membrane P-face of the inner enamel epithelium. Later two types of gap junctions were recognized: one consisted of quite densely aggregated particles with occasional particle-free areas, and the other consisted of relatively loosely aggregated particles with particle-free areas and aisles. Gap junction maturation seemed to consist in an increase of particle numbers. Fusion of gap junctions in the forming stage too was recognized. The results of this investigation suggest that, from an early stage in their development, human fetal ameloblasts possess highly differentiated cell-to-cell interrelations.  相似文献   

17.
VARIATIONS IN TIGHT AND GAP JUNCTIONS IN MAMMALIAN TISSUES   总被引:68,自引:42,他引:26       下载免费PDF全文
The fine structure and distribution of tight (zonula occludens) and gap junctions in epithelia of the rat pancreas, liver, adrenal cortex, epididymis, and duodenum, and in smooth muscle were examined in paraformaldehyde-glutaraldehyde-fixed, tracer-permeated (K-pyroantimonate and lanthanum), and freeze-fractured tissue preparations. While many pentalaminar and septilaminar foci seen in thin-section and tracer preparations can be recognized as corresponding to well-characterized freeze-fracture images of tight and gap junction membrane modifications, many others cannot be unequivocally categorized—nor can all freeze-etched aggregates of membrane particles. Generally, epithelia of exocrine glands (pancreas and liver) have moderate-sized tight junctions and large gap junctions, with many of their gap junctions basal to the junctional complex. In contrast, the adrenal cortex, a ductless gland, may not have a tight junction but does possess large gap junctions. Mucosal epithelia (epididymis and intestine) have extensive tight junctions, but their gap junctions are not as well developed as those of glandular tissue. Smooth muscle contains numerous small gap junctions The incidence, size, and configuration of the junctions we observed correlate well with the known functions of the junctions and of the tissues where they are found.  相似文献   

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