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101.
Hui Gai Peter D. Costantino David M. Nguyen David C. Ward 《Cell biology international》2009,33(11):1184-1193
We have successfully developed both spontaneous and inductive cardiomyocyte differentiation of iPS cells reprogrammed from human foreskin fibroblasts. The reprogrammed iPS cells morphologically resemble human cardiomyocytes which can beat. RT-PCR and immunostaining show that cardiac markers are expressed that are comparable to the differentiation pattern of authentic human embryonic stem cells, indicating the existence of both immature and mature differentiated cardiomyocytes. 5-Azacytidine greatly enhanced the efficiency of cardiomyocyte differentiation, whereas dimethylsulfoxide had no effect. Low serum and bone morphogenetic protein-2 marginally improved differentiation efficiency. iPS cell-derived cardiomyocytes changed their beat frequency in response to cardiac drugs, which included ion channel blockers and α/β adrenergic stimulators. Derived cardiomyocytes look promising as an in vitro system for potential drug screen and/or toxicity, making this system closer to practical use in the near future. 相似文献
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Mulberry dwarf (MD) is a serious infectious disease of mulberry caused by phytoplasma. Infection with MD phytoplasma results in stress phenotypes of yellowing, phyllody, stunting, proliferation, and witches' broom. Physiological and biochemical analysis has shown that infection with MD phytoplasma causes an increase in soluble carbohydrate and starch content, and a decrease in the net photosynthesis rate, carboxylation efficiency, and pigment content of leaves. Furthermore, damage to the chloroplast ultrastructure was detected in infected leaves. To better understand the pathogen‐stress response of mulberry (Morus alba L.) to MD phytoplasma, we conducted a comparative proteomic analysis using 2‐DE of infected and healthy leaves. Among 500 protein spots that were reproducibly detected, 20 were down‐regulated and 17 were up‐regulated. MS identified 16 differentially expressed proteins. The photosynthetic proteins rubisco large subunit, rubisco activase, and sedoheptulose‐1,7‐bisphosphatase showed enhanced degradation in infected leaves. Based these results, a model for the occurrence mechanism of MD is proposed. In conclusion, this study provides new insights into the mulberry response to MD phytoplasma infection. 相似文献
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目的:阐明鞘氨醇激酶(SPK)在肝细胞生长因子(HGF)诱导的内皮细胞迁移中的调节作用。方法:构建携带野生型SPK(SPK^WT)及负显性SPK(SPKDN)基因的重组腺病毒载体并包装获得重组腺病毒;用重组腺病毒感染ECV304细胞,检测感染效率及目的基因的表达;以^32P标记产物S1P测定细胞内SPK酶活性;用扩散盒技术观察高表达SPK^WT及SPK^ND对HGF诱导的内皮细胞迁移的影响。结果:野生型SPK基因表达可明显增强细胞内SPK的活性,并促进HGF诱导的内皮细胞迁移;而SPK负显性基因则显著抑制HGF诱导的内皮细胞迁移。结论:HGF通过SPK调控内皮细胞的迁移。 相似文献
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采用双向凝胶电泳对水稻红莲型细胞质雄性不育的不育系小孢子发育单核期和二核期花药总蛋白进行了分离,通过银染显色,获得了分辨率和重复性较好的双向电泳图谱,且单核期和二核期花药总蛋白质在双向电泳胶上分布的图谱十分相似。PDQuest 2DE图像分析软件在等电点(pI)3.0~10.0、分子量(M.W.)9.0~98.0 kD之间可识别约1 800个蛋白质点。比较分析发现单核期和二核期花药中共有241个差异表达的蛋白质点,其中仅在单核期中表达的点数为125,仅在二核期中表达的为13点;表现为表达量差异的105点,其中在二核期表达下调的点数为70点,表达上调的为33点。还对蛋白质点集中的区域(pI 4.5~8.0,M.W.25.0~70.0 kD)中的41个差异蛋白质点进行了分子量和等电点分析。 相似文献
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Crystal Structures of a Populus tomentosa 4-Coumarate:CoA Ligase Shed Light on Its Enzymatic Mechanisms 总被引:1,自引:0,他引:1
Yonglin Hu Ying Gai Lei Yin Xiaoxue Wang Chunyan Feng Lei Feng Defeng Li Xiang-Ning Jiang Da-Cheng Wang 《The Plant cell》2010,22(9):3093-3104
4-Coumaric acid:CoA ligase (4CL) is the central enzyme of the plant-specific phenylpropanoid pathway. It catalyzes the synthesis of hydroxycinnamate-CoA thioesters, the precursors of lignin and other important phenylpropanoids, in two-step reactions involving the formation of hydroxycinnamate-AMP anhydride and then the nucleophilic substitution of AMP by CoA. In this study, we determined the crystal structures of Populus tomentosa 4CL1 in the unmodified (apo) form and in forms complexed with AMP and adenosine 5′-(3-(4-hydroxyphenyl)propyl)phosphate (APP), an intermediate analog, at 2.4, 2.5, and 1.9 Å resolution, respectively. 4CL1 consists of two globular domains connected by a flexible linker region. The larger N-domain contains a substrate binding pocket, while the C-domain contains catalytic residues. Upon binding of APP, the C-domain rotates 81° relative to the N-domain. The crystal structure of 4CL1-APP reveals its substrate binding pocket. We identified residues essential for catalytic activities (Lys-438, Gln-443, and Lys-523) and substrate binding (Tyr-236, Gly-306, Gly-331, Pro-337, and Val-338) based on their crystal structures and by means of mutagenesis and enzymatic activity studies. We also demonstrated that the size of the binding pocket is the most important factor in determining the substrate specificities of 4CL1. These findings shed light on the enzymatic mechanisms of 4CLs and provide a solid foundation for the bioengineering of these enzymes. 相似文献
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