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111.
Qingqing Feng Lu Han Xu Tan Yali Zhang Tianyi Meng Jun Lu Jie Lv 《Current microbiology》2016,73(6):924-929
112.
Mei-Juan Tan Xi Chen Yu-Kuan Wang Guang-Lei Liu Zhen-Ming Chi 《Bioprocess and biosystems engineering》2016,39(8):1289-1296
In this study, after the expression of a pyruvate carboxylase gene (PYC) cloned from Meyerozyma guilliermondii in a marine-derived yeast Yarrowia lipolytica SWJ-1b, a transformant PG86 obtained had much higher PYC activity than Y. lipolytica SWJ-1b. At the same time, the PYC gene expression and citric acid (CA) production by the transformant PG86 were also greatly enhanced. When glucose concentration in the medium was 60.0 g L?1, CA concentration formed by the transformant PG86 was 34.02 g L?1, leading to a CA yield of 0.57 g g?1 of glucose. During a 10-L fed-batch fermentation, the final concentration of CA was 101.0 ± 1.3 g L?1, the yield was 0.89 g g?1 of glucose, the productivity was 0.42 g L?1 h?1 and only 5.93 g L?1 reducing sugar was left in the fermented medium within 240 h of the fed-batch fermentation. HPLC analysis showed that most of the fermentation products were CA. 相似文献
113.
114.
Julie Tan 《Critical reviews in biochemistry and molecular biology》2014,49(1):33-58
AbstractPhosphatidylinositol lipids are signaling molecules involved in nearly all aspects of cellular regulation. Production of phosphatidylinositol 4-phosphate (PI4P) has long been recognized as one of the first steps in generating poly-phosphatidylinositol phosphates involved in actin organization, cell migration, and signal transduction. In addition, progress over the last decade has brought to light independent roles for PI4P in membrane trafficking and lipid homeostasis. Here, we describe recent advances that reveal the breadth of processes regulated by PI4P, the spectrum of PI4P effectors, and the mechanisms of spatiotemporal control that coordinate crosstalk between PI4P and cellular signaling pathways. 相似文献
115.
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117.
5-脱氧杂氮胞苷抑制小鼠附植前的胚胎发育 总被引:1,自引:0,他引:1
DNA甲基化在哺乳动物发育过程中有关键作用.在小鼠附植前胚胎发育过程中,DNA甲基化一直处于动态变化过程中.通过将体外受精胚在5-AZA-CdR中持续培养,研究5-AZA-CdR对小鼠附植前胚胎发育的影响,为附植前胚胎发育机理的研究及5-AZA-CdR的毒副作用研究提供试验基础.从原核期加入不同浓度的5-AZA-CdR时,胚胎不能发育到桑椹胚(0.2 和1.0 μmol/L)和4-细胞胚(5.0 μmol/L);从2-细胞期加入时,胚胎阻滞于未致密化的8-细胞(0.2 和1.0 μmol/L)和3/4-细胞期(5.0 μmol/L);而当从4-细胞加入时,虽然胚胎能够发育到早期桑椹胚,但发育比例同对照相比显著降低(P < 0.05).进一步检测凋亡、基因组DNA甲基化和整体转录活性,结果显示,高浓度的5-AZA-CdR导致8-细胞和早期桑椹胚发生早期凋亡,而低浓度的5-AZA-CdR引起8-细胞和早期桑椹胚基因组DNA甲基化的降低和转录活性的降低,并且这种降低呈浓度依赖性.所以加入低浓度的5-AZA-CdR时,胚胎的DNA甲基化降低,引起转录活性的降低,进而导致胚胎发育的停滞. 相似文献
118.
Phosphorylation of Pkp1 by RIPK4 regulates epidermal differentiation and skin tumorigenesis 下载免费PDF全文
Philbert Lee Shangwen Jiang Yuanyuan Li Jiping Yue Xuewen Gou Shao‐Yu Chen Yingming Zhao Markus Schober Minjia Tan Xiaoyang Wu 《The EMBO journal》2017,36(13):1963-1980
Tissue homeostasis of skin is sustained by epidermal progenitor cells localized within the basal layer of the skin epithelium. Post‐translational modification of the proteome, such as protein phosphorylation, plays a fundamental role in the regulation of stemness and differentiation of somatic stem cells. However, it remains unclear how phosphoproteomic changes occur and contribute to epidermal differentiation. In this study, we survey the epidermal cell differentiation in a systematic manner by combining quantitative phosphoproteomics with mammalian kinome cDNA library screen. This approach identified a key signaling event, phosphorylation of a desmosome component, PKP1 (plakophilin‐1) by RIPK4 (receptor‐interacting serine–threonine kinase 4) during epidermal differentiation. With genome‐editing and mouse genetics approach, we show that loss of function of either Pkp1 or Ripk4 impairs skin differentiation and enhances epidermal carcinogenesis in vivo. Phosphorylation of PKP1's N‐terminal domain by RIPK4 is essential for their role in epidermal differentiation. Taken together, our study presents a global view of phosphoproteomic changes that occur during epidermal differentiation, and identifies RIPK‐PKP1 signaling as novel axis involved in skin stratification and tumorigenesis. 相似文献
119.
In this paper, photosynthetic characteristics of green leaves (GL) and green pseudobulbs (GPSB) of C3 orchid Oncidium Golden Wish were first studied. Light saturation for photosynthesis and maximum photosynthetic rates (P
max) were significantly higher in GL than in GPSB. The results of the optimal PSII quantum yield (Fv/Fm ratio), electron transport rate (ETR), the effective photochemical quantum yield (ΔF/Fm′) and nonphotochemical quenching (NPQ) of Chl fluorescence revealed that GPSB had lower light utilization than that of GL.
Significantly higher photosynthetic pigments were found in GL than in GPSB. Alteration of source/sink ratio had no impact
on all photosynthetic parameters for both GL and GPSB after a short term of 3 days or even a long term of 2 weeks of treatments
although there were significant decreases in GL carbohydrate concentration of GL-darkened plants by the end of the day. However,
decreases of all photosynthetic parameters of GL were observed in GL-darkened plants after 4 weeks of treatment compared to
those of fully illuminated (FI) and GPSB-darkened plants. These results indicate that the level of carbohydrates in GL plays
an important role in regulating their photosynthesis. Due to their lower photosynthetic capacities, GPSB function mainly as
sinks. Darkening GPSB up to 2 weeks did not affect their own P
max and the P
max of GL and thus, did not result in significant decreases of total carbohydrate concentration of GPSB. As GPSB store a large
amount of carbohydrates, it could also act as a source when the level of carbohydrates decreased. Thus, GL could depend on
GPSB carbohydrates to regulate their photosynthesis when their source capacity was removed. However, 4 weeks after treatments,
photosynthetic capacities of GL were significantly lower in GL- and GPSB-darkened plants than in FI plants, which could be
due to the lower total soluble and insoluble sugar concentrations of both GL and GPSB in these plants. 相似文献
120.
Li J Dong Z Liu B Zhuo Y Sun X Yang Z Ge J Tan Z 《Biochemical and biophysical research communications》2011,(1):40-44
Beta-amyloid (Aβ) derived from amyloid precursor protein (APP) has been associated with retinal degeneration in Alzheimer’s disease (AD) and glaucoma. This study examined whether hypoxia exposure induces Aβ accumulation in RGC-5 cells. While levels of APP mRNA and protein significantly increased in the cells, elevated abundance of Aβ was also observed in cells and culture medium between 12 or 24 and 48 h after 5% O2 hypoxia treatment. Additionally, there is a close relationship between induction of APP and Aβ and intracellular accumulation of ROS along with loss of mitochondrial membrane potential followed by the death of RGC-5 cells in culture under hypoxia. These results suggest a possible involvement of APP and Aβ in the death of RGCs challenged by hypoxia. 相似文献