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981.
Human serum albumin (HSA) is the major protein component of human plasma. To date, HSA for clinical uses is mostly produced
by fractionation of human whole blood, which is accompanied by a lot of limitations. To obtain long-term bioactive albumin,
we used hsa as a foreign gene and constructed a recombinant plasmid pJS700-HSA which carries a recombinant gene cotC-hsa under the control of cotC promoter. Plasmid pJS700-HSA was transformed into Bacillus subtilis by double cross-over and an amylase inactivated mutant was produced. After induction of spore formation, western blot and
fluorescence immunoassay were used to monitor HSA surface expression on spores. We estimated that HSA displayed on the spore
accounted for 0.135 % of the total spore proteins and about 0.023 fg HSA were exposed on the surface of each spore. Oral administration
to mice with spores displaying HSA implied that the recombinant spores may have potential ability to increase the serum albumin
level in vivo due to the resistant characters of spores. 相似文献
982.
Lithium Doping to Enhance Thermoelectric Performance of MgAgSb with Weak Electron–Phonon Coupling
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Zihang Liu Yumei Wang Jun Mao Huiyuan Geng Jing Shuai Yuanxu Wang Ran He Wei Cai Jiehe Sui Zhifeng Ren 《Liver Transplantation》2016,6(7)
Despite the unfavorable band structure with twofold degeneracy at the valence band maximum, MgAgSb is still an excellent p‐type thermoelectric material for applications near room temperature. The intrinsically weak electron–phonon coupling, reflected by the low deformation potential Edef ≈ 6.3 eV, plays a crucial role in the relatively high power factor of MgAgSb. More importantly, Li is successfully doped into Mg site to tune the carrier concentration, leading to the resistivity reduction by a factor of 3 and a consequent increase in power factor by ≈30% at 300 K. Low lattice thermal conductivity can be simultaneously achieved by all‐scale hierarchical phonon scattering architecture including high density of dislocations and nanoscale stacking faults, nanoinclusions, and multiscale grain boundaries. Collectively, much higher average power factor ≈25 μW cm?1 K?2 with a high average ZT ≈ 1.1 from 300 to 548 K is achieved for 0.01 Li doping, which would result in a high output power density ≈1.56 W cm?2 and leg efficiency ≈9.2% by calculations assuming cold‐side temperature Tc = 323 K, hot‐side temperature Th = 548 K, and leg length = 2 mm. 相似文献
983.
984.
超临界CO2技术萃取蛋黄磷脂 总被引:15,自引:0,他引:15
采用新型物理分离技术──超临界CO2萃取法,提取天然蛋黄粉中的磷脂.在40MPa,先去除蛋黄粉中甘油三酯和胆固醇,再萃取磷脂.结果显示,磷脂纯度为95%,N/P比值为1.003,λmax=214nm,薄层层析显示磷脂着色点清晰,并去除了绝大部分甘油三酯和胆固醇.此法操作简单、产品质量高、安全和不污染环境,还可得到天然纯蛋黄油和蛋白. 相似文献
985.
中国荷斯坦牛IL8基因遗传多态性与泌乳性状以及体细胞评分的关联 总被引:2,自引:0,他引:2
以上海某奶牛场30个公牛家系的610头中国荷斯坦牛为试验材料,采用聚合酶链式反应-单链构象多态性(PCR-SSCP)技术对Interleukin-8(IL8)基因的遗传多态性进行了分析,采用混合动物模型分析了IL8基因突变位点与测定日产奶量、测定日乳脂率、测定日乳蛋白率、305d校正产奶量、305d乳脂量、305d乳蛋白量及测定日体细胞评分7个性状的相关性,寻找可用于生产实际的分子标记。共检测到KK、KA和AA3种基因型,频率分别为0.187、0.451和0.362,等位基因K和A的频率分别为0.412和0.588。该位点突变对测定日产奶量、305d乳蛋白量、305d校正产奶量和305d乳脂量以及体细胞评分影响达到极显著水平(P0.01),对测定日乳蛋白率的影响达到显著水平(P0.05),对测定日乳脂率影响不显著(P0.05)。多重比较表明:KK基因型对测定日产奶量、305d校正产奶量、305d乳蛋白量和305d乳脂量极显著高于AA和KA基因型(P0.01)。KK基因型的体细胞评分(SCS)最小二乘均值极显著低于KA、AA基因型(P0.01)。对于测定日的乳蛋白率AA基因型显著低于KA、KK型(P0.05)。IL8基因遗传突变对中国荷斯坦牛泌乳性状和乳房炎抗性有较大的遗传效应,可用于中国荷斯坦牛的分子标记辅助选择。 相似文献
986.
用转PEPC、PPDK、NADP-ME、PEPC+PPDK酶基因水稻(Oryza sativa L.)及原种为材料 ,研究了光合作用对光照、温度、CO2的响应和光抑制条件下的叶绿素荧光特性,结果如下: 1.转C4光合酶基因水稻的饱和光合速率比原种高,其中转PEPC、PEPC+PPDK双基因水稻的光饱和点比原种高200 μmol*m-2*s-1,饱和光合速率比原种分别高51.6%和 58.5%;转PEPC基因水稻的羧化效率比原种高49.3%,CO2补偿点降低26.2%;在高温(35 ℃)下,转PEPC基因水稻的光合速率比原种高17.5%.2.经光抑制处理8 d后,转PEPC、PEPC +PPDK酶基因水稻的PSⅡ光化学效率(Fv/Fm)和光化学猝灭(qP)下降20%- 30%,非光化学猝灭(qN)增加了约30%;但原种的Fv/Fm和qP下降了5 0%多,qN变化不明显,表明转C4光合基因水稻耐光抑制能力增强.这些结果为用生物技术提高水稻光合效率研究提供了新的依据和途径. 相似文献
987.
以成熟人胎盘组织为材料来源,克隆人BMP-4基因的全长cDNA,经过PCR扩增后与pMD18-T载体连接,构建pMD18-T-BMP4克隆质粒.酶切后回收小片段与表达载体pET-22b的多克隆酶切位点连接,构建原核表达载体pET22b-BMP4,酶切及测序鉴定重组子.重组质粒转化至感受态的Rosseta宿主菌,经IPTG诱导表达,SDS-PAGE检测蛋白表达情况.结果显示,从胎盘组织中成功地克隆到人BMP4基因,与NCBI中公布的序列100%相符合,原核表达载体pET22b-BMP4转化至Rosseta构建表达菌体,经IPTG诱导后电泳分析可见重组蛋白表达的条带. 相似文献
988.
hnRNP C and polypyrimidine tract-binding protein specifically interact with the pyrimidine-rich region within the 3'NTR of the HCV RNA genome 总被引:3,自引:0,他引:3
Gontarek RR Gutshall LL Herold KM Tsai J Sathe GM Mao J Prescott C Del Vecchio AM 《Nucleic acids research》1999,27(6):1457-1463
Like other members of the Flaviviridae family, the 3' non-translated region (NTR) of the hepatitis C virus (HCV) is believed to function in the initiation and regulation of viral RNA replication by interacting with components of the viral replicase complex. To inves-tigate the possibility that host components may also participate in this process, we used UV cross-linking assays to determine if any cellular proteins could bind specifically to the 3'NTR RNA. We demonstrate the specific interaction of two host proteins with the extensive pyrimidine-rich region within the HCV 3'NTR. One host protein migrates as a doublet with a molecular weight of 57 kDa and is immunoreactive with antisera specific for polypyrimidine tract-binding protein (PTB), and the other protein (35 kDa) is recognized by a monoclonal antibody specific for heterogeneous nuclear ribonucleoprotein C (hnRNP C). These results suggest that recognition of the large pyrimidine-rich region by PTB and hnRNP C may play a role in the initiation and/or regulation of HCV RNA replication. 相似文献
989.
Yan-Fang Xian Siu-Po Ip Zhi-Xiu Lin Qing-Qiu Mao Zi-Ren Su Xiao-Ping Lai 《Cellular and molecular neurobiology》2012,32(8):1223-1230
Beta-Amyloid peptide (A??), a major protein component of brain senile plaques in Alzheimer??s disease (AD), has been considered as a critical cause in the pathogenesis of AD. Pinostrobin, a potent flavonoid inducer, is the major and most active ingredient of Folium cajani. The present study aimed to investigate whether pinostrobin could provide protective effect against A??25-35-induced neurotoxicity in cultured rat pheochromocytoma (PC12) cells. The PC12 cells were pretreated with different concentrations of pinostrobin for 2?h, followed by the challenge with 20???M A??25?C35 for 24?h. The results showed that pretreatment with pinostrobin significantly elevated cell viability, decreased the lactate dehydrogenase activity, the levels of intracellular reactive oxygen species and calcium, and mitochondrial membrane potential in A??25?C35-treated PC12 cells. In addition, pinostrobin significantly suppressed the formation of DNA fragmentation and increased the ratio of Bcl-2/Bax. These results indicate that pinostrobin was able to exert a neuroprotective effect against A??25?C35-induced neurotoxicity in PC12 cells, at least in part, via inhibiting oxidative damage and calcium overload, as well as suppressing the mitochondrial pathway of cellular apoptosis. 相似文献
990.
Mao S Lee SJ Hwangbo H Kim YW Park KH Cha GS Park RD Kim KY 《Current microbiology》2006,53(5):358-364
A new antagonistic Burkholderia strain, designated MP-1 and producing antifungal activities against various filamentous plant pathogenic fungi, was isolated
from the rhizoshere in the Naju area. Cultural characteristic studies strongly suggested that this strain belongs to the genus
Burkholderia. The nucleotide sequence of the 16S rRNA gene (1491 pb) of strain MP-1 exhibited close similarity (99% to 100%) with other
Burkholderia 16S rRNA genes. Extraction of fermentation broth of Burkholderia sp. MP-1 and various separations and purification steps led to isolation of four pure active molecules. The chemical structure
of these four compounds—named phenylacetic acid, hydrocinnamic acid, 4-hydroxyphenylacetic acid, and 4-hydroxyphenylacetate
methyl ester—was established on the basis on their gas chromatography–electron impact–mass spectrometry (GC-EI-MS) and trimethylsilation
GC-EI-MS data. The four isolated compounds inhibited filamentous fungal growth on potato dextrose agar medium supplemented
with 100 mg/L of phenylacetic acid, hydrocinnamic acid, 4-hydroxyphenylacetic acid and 4-hydroxyphenylacetate methyl ester
individually. 相似文献