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101.
Summary The cloning of glucoamylase geneSTA using theSUC2 promoter intoSaccharomyces cerevisiae was performed. The signal sequence ofSTA gene was used for the secretion of glucoamylase protein. The plasmid constructed in this way was named YEpSUCSTA and its expression was identified. The expression of YEpSUCSTA was repressed in the presence of glucose in growth medium, but derepressed when glucose became depleted. YEpSUCSTA showed the similar efficiency of glucoamylase secretion as YEpSTA-F which has the entireSTA gene. Glucoamylase activity in starch-glucose medium was largely increased because cell mass and plasmid stability were high in biosynthesis phase compared to extracellular glucoamylase activities in media which starch or glucose was the only carbon source. 相似文献
102.
Reactive oxygen species alter contractile properties of pulmonary arterial smooth muscle 总被引:2,自引:0,他引:2
R A Rhoades C S Packer D A Roepke N Jin R A Meiss 《Canadian journal of physiology and pharmacology》1990,68(12):1581-1589
Reactive oxygen species alter pulmonary arterial vascular tone and cause changes in pulmonary vascular resistance. The objective of this investigation was to determine direct effects of oxygen radicals on the contractile properties of pulmonary arterial smooth muscle. Isolated pulmonary arterial rings from Sprague-Dawley rats were placed in tissue baths containing Earle's balanced salt solution (gassed with 95% O2 - 5% CO2, 37 degrees C, pH 7.4). Vessels were contracted with 80 mM KCl to establish maximum active force production (Po). All other responses were normalized as percentages of Po for comparative purposes. Reactive oxygen metabolites were generated enzymatically with either the xanthine oxidase (XO) reaction or the glucose oxidase (GO) reaction, or hydrogen peroxide (H2O2) was added directly to the muscle bath. Exposure to XO, GO, or to H2O2 resulted in a contractile response that was sustained during the 30-min exposure period. The muscle fully relaxed following removal of the reactive oxygen species. Resting tension remained unchanged throughout the experimental period, suggesting no functional change in membrane potential. The contractile response was dose dependent and was not prevented by either cyclooxygenase or lipoxygenase inhibition, or by removal of the endothelium. Pretreatment of vessels with superoxide dismutase (SOD) partially blocked the XO-induced contraction, while mannitol or deferoxamine had no effect on the response to XO. However, pretreatment with catalase (CAT) completely blocked the XO-induced contraction. These data suggest that superoxide ions and hydrogen peroxide are the major causative agents. Following O2-radical exposure, vessels showed a decrease in contractile responsiveness to 80 mM KCl (recovery response), suggesting damage to the smooth muscle cells.(ABSTRACT TRUNCATED AT 250 WORDS) 相似文献
103.
福氏痢疾菌膜成分与细菌抗原性和毒力的关系 总被引:1,自引:0,他引:1
应用免疫转移技术,用从感染福氏痢疾菌的病人获取的恢复期血清分析了福氏痢疾菌膜成分与细菌抗原性和毒力的关一。发现福氏痢疾菌的膜蛋白67kD和63kD均含有两种成分,一种和膜蛋白60kD都可能是保护性抗原,而另一种与膜蛋白78kD和35kD一样与福氏痢疾菌的毒力有关。采用微细胞同位素掺入示踪显示这些与病人恢复期血清反应的膜蛋白由质粒编码。 相似文献
104.
Atsuo Tanaka Ing-Nyol Jin Susumu Kawamoto Saburo Fukui 《Applied microbiology and biotechnology》1979,7(4):351-354
Summary Microbial cells and cellular organelles were immobilized by mixing aqueous suspensions of the biocatalysts with water-miscible urethane prepolymers. Thus immobilized preparations of acetone-dried cells of Arthrobacter simplex and thawed cells of Nocardia rhodocrous showed appreciable {ie351-1} activities in the transformation of hydrocortisone into prednisolone and 4-androstene-3,17-dione to androst-1,4-diene-3,17-dione, respectively. The activities of catalase and alcohol oxidase were observed in the immobilized peroxisomes (microbodies) of a methanol-grown yeast Kloeckera sp. No. 2201. Yeast mitochondria entrapped with the prepolymer showed adenylate kinase activity. These results indicate the usefulness of the urethane prepolymers as convenient materials for entrapment of not only enzymes, but also organelles and microbial cells. 相似文献
105.
Dai Sik Ko Junho Kang Hye Jin Heo Eun Kyoung Kim Kihun Kim Jin Mo Kang YunJae Jung Seung Eun Baek Yun Hak Kim 《International journal of biological sciences》2022,18(13):5154
Vascular smooth muscle cell (VSMC) proliferation is a hallmark of neointimal hyperplasia (NIH) in atherosclerosis and restenosis post-balloon angioplasty and stent insertion. Although numerous cytotoxic and cytostatic therapeutics have been developed to reduce NIH, it is improbable that a multifactorial disease can be successfully treated by focusing on a preconceived hypothesis. We, therefore, aimed to identify key molecules involved in NIH via a hypothesis-free approach. We analyzed four datasets (, GSE28829, GSE43292, and GSE100927), evaluated differentially expressed genes (DEGs) in wire-injured femoral arteries of mice, and determined their association with VSMC proliferation in vitro. Moreover, we performed RNA sequencing on platelet-derived growth factor (PDGF)-stimulated human VSMCs (hVSMCs) post-phosphoenolpyruvate carboxykinase 2 (PCK2) knockdown and investigated pathways associated with PCK2. Finally, we assessed NIH formation in Pck2 knockout (KO) mice by wire injury and identified PCK2 expression in human femoral artery atheroma. Among six DEGs, only PCK2 and RGS1 showed identical expression patterns between wire-injured femoral arteries of mice and gene expression datasets. PDGF-induced VSMC proliferation was attenuated when hVSMCs were transfected with PCK2 siRNA. RNA sequencing of PCK2 siRNA-treated hVSMCs revealed the involvement of the Akt-FoxO-PCK2 pathway in VSMC proliferation via Akt2, Akt3, FoxO1, and FoxO3. Additionally, NIH was attenuated in the wire-injured femoral artery of Pck2-KO mice and PCK2 was expressed in human femoral atheroma. PCK2 regulates VSMC proliferation in response to vascular injury via the Akt-FoxO-PCK2 pathway. Targeting PCK2, a downstream signaling mediator of VSMC proliferation, may be a novel therapeutic approach to modulate VSMC proliferation in atherosclerosis. GSE120521相似文献
106.
高产青霉素酰化酶巨大芽胞杆菌的诱变选育及产酶条件优化 总被引:1,自引:0,他引:1
【目的】选育高产青霉素G酰化酶(PGA)工业菌株。【方法】采用LiCl-紫外线复合诱变以及常压室温等离子体(ARTP)诱变技术对巨大芽胞杆菌(Bacillus megaterium) ATCC 14945进行处理。处理菌体涂平板后,将长出的菌落接种到液体培养基中,向培养6 h后的二代菌液中添加终浓度为0.1%的苯乙酸,28 °C、250 r/min条件下诱导培养40 h。对离心后获得的上清(粗酶液)采用NIPAB法测定PGA酶活力。以PGA酶活力最高的菌株为材料,对苯乙酸最佳添加量和最佳诱导时间进行优化,采用NIPAB法测定PGA酶活力。采用SDS-PAGE检测诱变前后巨大芽胞杆菌粗酶液中PGA的蛋白特性。【结果】从诱变菌落中筛选到PGA酶活力为39.60 U/mL的菌株12-4,酶活力比出发菌株提高了8.5倍。该菌株在液体培养6 h后添加终浓度为0.2%的苯乙酸,继续培养50 h后,PGA酶活力可达78.45 U/mL,比出发菌株提高了16.8倍。诱变前后菌株培养液中的PGA蛋白均具α、β亚基;诱变后菌株PGA α亚基的量没有明显变化,β亚基的量明显增多;α、β亚基之间的蛋白条带明显增多。【结论】采用诱变技术可提高巨大芽胞杆菌PGA活性,获得的诱变菌株12-4及培养条件对PGA工业化生产具有重要价值。 相似文献
107.
The Ubiquitin-fold modifier 1 (Ufm1) is a ubiquitin-like protein that can also be conjugated to protein substrates and subsequently alter their fates. Both UFMylation and de-UFMylation are mediated by Ufm1-specific proteases (UFSPs). In humans, it is widely believed that UFSP2 is the only active Ufm1 protease involved in Ufm1 maturation and de-UFMylation, whereas UFSP1 is thought to be inactive. Here, Liang et al. provide strong evidence showing that human UFSP1 is also an active Ufm1 protease. These results solve an age-old mystery in the human Ufm1 conjugation system and could have a greater impact not only on Ufm1 biology but also on the translation of genes employing nontraditional start codons. 相似文献
108.
109.
110.