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61.
哈尔滨东部城乡土地梯度带的划分及景观结构 总被引:1,自引:0,他引:1
以哈尔滨市及东部郊区为对象,重点研究城乡土地梯度带的划分以及造成这种景观分异的内在机制,特别是对镶嵌在城市到乡村之间土地类型的数量变化,研究土地景观结构的特点.研究区范围东西35km,南北16km,在GIS平台上使用TM与SPOT卫星图像划分出东西2.5km,南北16km大小的14条等面积的连续梯度带,根据等面积梯度带的建筑密度和道路密度将研究区域划分为市区、近郊区、远郊区3个梯度区.应用计算机目视判读方法对研究区内进行了土地类型的识别及区划,利用GIS空间分析,计算了各种梯度带的内的不同土地类型的长度、面积.通过这些计算与分析研究了哈尔滨市及东部城乡之间不同梯度带的绿地景观空间结构特点,以绿地建设为核心,辅以城市景观结构及空间格局的特点,分析讨论不同城乡梯度带景观分异的成因.研究表明,区域道路密度和建筑物密度可以在一定程度上反应出城市化进程,据此将哈尔滨及东部城乡划分为市区、近郊区和远郊区;不同梯度区域有其各自的人文景观结构特点和绿地景观结构特点,讨论了造成这种梯度特征的内在机制,并对研究区域未来的城乡绿地及景观建设和可持续发展提出了建议. 相似文献
62.
Ning Xu Yijie Dong Xinxin Cheng Qilin Yu Kefan Qian Jiwei Mao Chang Jia Xiaohui Ding Bing Zhang Yulu Chen Biao Zhang Laijun Xing Mingchun Li 《Biochimica et Biophysica Acta (BBA)/Molecular Cell Research》2014
Iron bioavailability is crucial for mitochondrial metabolism and biosynthesis. Dysregulation of cellular iron homeostasis affects multiple aspects of mitochondrial physiology and cellular processes. However, the intracellular iron trafficking pathway in Candida albicans remains unclear. In this study, we characterized the Mrs4–Ccc1–Smf3 pathway, and demonstrated its important role in maintaining cellular iron levels. Double deletion of vacuolar iron exporter SMF3 and mitochondrial iron transporter MRS4 further elevated cellular iron levels in comparison with the single MRS4 deletion. However, deletion of vacuolar iron importer CCC1 in the mrs4?/? mutant restored cellular iron homeostasis to normal wild-type levels, and also normalized most of the defective phenotypes in response to various environmental stresses. Our results also suggested that both Mrs4 and Ccc1 contributed to the maintenance of mitochondrial function. The mrs4?/? and mrs4?/?smf3?/? mutants exhibited an obvious decrease in aconitase activities and mitochondrial membrane potential, whereas deletion of CCC1 in the mrs4?/? mutant effectively rescued these defects. Furthermore, we also found that the Mrs4–Ccc1–Smf3 pathway was indispensable for cell-wall stability, antifungal drug tolerance, filamentous growth and virulence, supporting the novel viewpoint that mitochondria might be the promising target for better antifungal therapies. Interestingly, the addition of exogenous iron failed to rescue the defects on non-fermentable carbon sources or hyphae-inducing medium, indicating that the defects in mitochondrial respiration and filamentous development might result from the disturbance of cellular iron homeostasis rather than environmental iron deprivation. Taken together, our results propose the Mrs4–Ccc1–Smf3 pathway as a potentially attractive target for antifungal drug development. 相似文献
63.
iTRAQ‐coupled 2‐D LC‐MS/MS analysis of protein profile associated with HBV‐modulated DNA methylation
The development of hepatocellular carcinoma (HCC) is believed to be associated with multiple risk factors, including the infection of hepatitis B virus (HBV). Based on the analysis of individual genes, evidence has indicated the association between HCC and HBV and has also been expanded to epigenetic regulation, with an involvement of HBV in the DNA methylation of the promoter of cellular target genes leading to changes in their expression. Proteomic study has been widely used to map a comprehensive protein profile, which in turn could provide a better understanding of underlying mechanisms of disease onset. In the present study, we performed a proteomic profiling by using iTRAQ‐coupled 2‐D LC/MS‐MS analysis to identify cellular genes down‐regulated in HBV‐producing HepG2.2.15 cells compared with HepG2 cells. A total of 15 proteins including S100A6 and Annexin A2 were identified by our approach. The significance of these cellular proteins as target of HBV‐mediated epigenetic regulation was supported by our validation assays, including their reactivation in cells treated with 5‐aza‐2′‐deoxycytidine (a DNA methyltransferase inhibitor) by real‐time RT‐PCR and Western blot analysis, as well as the DNA methylation status analysis by bisulfite genome sequencing. Our approach provides a comprehensive analysis of cellular target proteins to HBV‐mediated epigenetic regulation and further analysis should facilitate a better understanding of its involvement in HCC development. 相似文献
64.
Hui‐Mei Wu Li‐Feng Zhang Pei‐Shang Ding Ya‐Jing Liu Xu Wu Jiang‐Ning Zhou 《Journal of cellular and molecular medicine》2014,18(7):1300-1312
The rational of neural stem cells (NSCs) in the therapy of neurological disease is either to replace dead neurons or to improve host neuronal survival, the latter of which has got less attention and the underlying mechanism is as yet little known. Using a transwell co‐culture system, we reported that, in organotypic brain slice cultures, NSCs significantly improved host neuronal viability. Interestingly, this beneficial effect of NSCs was abrogated by a microglial inhibitor minocycline, while it was mimicked by a microglial agonist, Toll‐like receptor 9 (TLR9) ligand CpG‐ODN, which supports the pro‐vital mediation by microglia on this NSCs‐improved neuronal survival. Moreover, we showed that NSCs significantly induced host microglial movement and higher expression of a microglial marker IBA‐1, the latter of which was positively correlated with TLR9 or extracellular‐regulated protein kinases 1/2 (ERK1/2) activation. Real‐time PCR revealed that NSCs inhibited the expression of pro‐inflammatory molecules, but significantly increased the expression of molecules associated with a neuroprotective phenotype such as CX3CR1, triggering receptor expressed on myeloid cells‐2 (TREM2) and insulin growth factor 1 (IGF‐1). Similarly, in the microglia cells, NSCs induced the same microglial response as that in the slices. Further treatment with TLR9 ligand CpG‐ODN, TLR9 inhibitor chloroquine (CQ) or ERK1/2 inhibitor U0126 demonstrated that TLR9‐ERK1/2 pathway was involved in the NSCs‐induced microglial activation. Collectively, this study indicated that NSCs improve host neuronal survival by switching microglia from a detrimental to a neuroprotective phenotype in adult mouse brain, and the microglial TLR9‐ERK1/2 pathway seems to participate in this NSCs‐mediated rescue action. 相似文献
65.
人新基因hbrp的染色体定位及其对TPK活性的抑制作用(简报) 总被引:1,自引:0,他引:1
hbrp(Human BSP-Related Protein)是我们实验室最近在睾丸组织中克隆的一个人与BSP(bovine seminal plasma)蛋白相关的新基因。为了将有关该新基因信息与现有人类基因组转录图相整合,我们应用荧光原位杂交(fluorescent in situ hybridizationFISH)法进行了该基因的人染色体基因定位,结果成功地将hbrp基因定位在人19号染色体长臂1区3带上。hbrp基因是在对BSP蛋白功能的研究过程中发现并克隆的,其同源性分析发现,与其序列最相近 相似文献
66.
67.
Liping Yang Ning Liu Xiang Hu Wenfeng Zhang Tao Wang Hong Li Bo Zhang Shuanglin Xiang Jianlin Zhou Jian Zhang 《Molecular biology reports》2010,37(6):2967-2973
TNFAIP1 is a protein which can be induced by tumor necrosis factorα (TNFα) and interleukin-6 (IL-6), it may play roles in
DNA synthesis, DNA repair, cell apoptosis and human diseases. However, very little has been known about how TNFAIP1 acts in
these physiological processes. In this paper, CK2β was identified as a partner of TNFAIP1 by screening the HeLa cDNA library
in yeast two-hybrid system with TNFAIP1 as a bait. Furthermore, it was demonstrated that CK2 could phosphorylate TNFAIP1 in vitro
and in vivo, which facilitated the distribution of TNFAIP1 in nucleus and enhanced its interaction with PCNA. It is suggested
that the phosphorylation of TNFAIP1 may be required for its functions. 相似文献
68.
体细胞核移植(体细胞克隆)技术在动物生产、医药工业、治疗性克隆以及对珍稀濒危动物的拯救有重要意义,然而克隆效率低下以及克隆动物发育异常,严重制约了克隆技术的发展和应用.在体细胞核克隆中,供体核来自高度分化了的体细胞,发生在核移植后几小时内供体核的重编程,决定了克隆胚胎的发育能力.印记基因是由等位基因表观遗传修饰的不对称导致的基因表达具有亲本选择性,而DNA甲基化是调控印记的一个主要方式.印记基因Mash2在胚胎发育和器官形成过程中起着非常重要的作用.为了探求核移植过程中Mash2基因DNA 甲基化的表观重编程是否充分,利用亚硫酸氢盐测序法对出生48 h内死亡的体细胞核移植牛和正常对照牛肺脏中Mash2基因的DNA甲基化状态进行分析.结果显示,尽管位于Mash2基因启动子和第一个外显子处的CpG岛在正常牛和克隆牛中甲基化水平都不高(20.04%,5.55%),但克隆组的甲基化水平仍显著低于正常对照组 (P < 0.05).甲基化模式正常组中9N3有5种不同的形式,9N4仅1种;而克隆组9C3和9C5也分别是1种.推测Mash2基因的异常DNA甲基化很可能是导致克隆牛肺脏发育异常的一个重要原因. 相似文献
69.
70.
Tsai JJ Liu SH Yin SC Yang CN Hsu HS Chen WB Liao EC Lee WJ Pan HC Sheu ML 《PloS one》2011,6(9):e23249