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1.
Wanwisa Dejnirattisai Daming Zhou Helen M. Ginn Helen M.E. Duyvesteyn Piyada Supasa James Brett Case Yuguang Zhao Thomas S. Walter Alexander J. Mentzer Chang Liu Beibei Wang Guido C. Paesen Jose Slon-Campos César López-Camacho Natasha M. Kafai Adam L. Bailey Rita E. Chen Baoling Ying Gavin R. Screaton 《Cell》2021,184(8):2183-2200.e22
2.
Yun Zhen CAO Hong Zhou LU 《Cell research》2005,(12)
Compared with high infection areas of the world, the total HIV infection rate in China is relatively low. Nonetheless,because of China‘s vast territory and large population, the potential infection risk must be taken seriously. In the next few years, needle sharing among injection drug users will remain the most common route of transmission for the HIV/AIDS epidemic in China. Unprotected sex is gradually becoming a major route of transmission. China began to implement HAART in 1999 according to international standards. Prior to 2003, there were only about 150 HIV/AIDS patients were treated with HAART in some clinical trials and about 100 HIV/AIDS patients were treated by private sources.Results of those treatments are the scientific basis for development of the therapeutic strategies in China. In March of 2003, the Chinese government initiated China CARES program. In November of 2003, the Chinese Ministry of Health announced a national policy of free ARV treatment to all HIV Chinese citizens who were in poverty and required ARV therapy. There are total of 19,456 HIV/AIDS patients received free ARV drugs to date in 159 regions and 441 towns.Current challenges are how to follow-up and evaluate those patients in the clinical settings. The longer the therapy is postponed, the more side effects and the higher probability of drug resistance are going to occur. It remains unclear,therefore, when HAART regimen should be started in the HIV/AIDS population in China. 相似文献
3.
Whole-Genome Shotgun Optical Mapping of Rhodospirillum rubrum 总被引:1,自引:0,他引:1
Susan Reslewic Shiguo Zhou Mike Place Yaoping Zhang Adam Briska Steve Goldstein Chris Churas Rod Runnheim Dan Forrest Alex Lim Alla Lapidus Cliff S. Han Gary P. Roberts David C. Schwartz 《Applied microbiology》2005,71(9):5511-5522
Rhodospirillum rubrum is a phototrophic purple nonsulfur bacterium known for its unique and well-studied nitrogen fixation and carbon monoxide oxidation systems and as a source of hydrogen and biodegradable plastic production. To better understand this organism and to facilitate assembly of its sequence, three whole-genome restriction endonuclease maps (XbaI, NheI, and HindIII) of R. rubrum strain ATCC 11170 were created by optical mapping. Optical mapping is a system for creating whole-genome ordered restriction endonuclease maps from randomly sheared genomic DNA molecules extracted from cells. During the sequence finishing process, all three optical maps confirmed a putative error in sequence assembly, while the HindIII map acted as a scaffold for high-resolution alignment with sequence contigs spanning the whole genome. In addition to highlighting optical mapping's role in the assembly and confirmation of genome sequence, this work underscores the unique niche in resolution occupied by the optical mapping system. With a resolution ranging from 6.5 kb (previously published) to 45 kb (reported here), optical mapping advances a “molecular cytogenetics” approach to solving problems in genomic analysis. 相似文献
4.
Effects of water stress and high nocturnal temperature on photosynthesis and nitrogen level of a perennial grass Leymus chinensis 总被引:5,自引:0,他引:5
Water deficit and high temperature are important environmental factors restricting plant growth and photosynthesis. The two
stresses often occur simultaneously, but their interactions on photosynthesis and nitrogen level have been less studied. In
the present experiment, we measured photosynthetic parameters, stomatal density, and nitrogen levels, as well as soluble sugar
content of leaves of a perennial grass, Leymus chinensis, experiencing two day/night temperature regimes of 30/20 °C and 30/25 °C, and five different soil moisture contents (the
soil relative-water content ranged from 80% to 25%). Leaf relative water content, leaf biomass, whole plant biomass, the ratio
between the leaf biomass and total plant biomass, and the photosynthetic rate, as well as water-use efficiency decreased at
high night temperature, especially under severe water stress conditions. Stomatal index was also increased by soil water stress
except very severe water stress, and high nocturnal temperature decreased the leaf stomatal index under soil water stress.
Nocturnal warming decreased nitrogen concentration in the leaves and increased it in the roots, particularly when plants were
subjected to severe water stress. There were significant positive correlations between the photosynthetic rate and both soluble
sugar concentration and nitrogen concentration at low nocturnal temperature. It is suggested that nocturnal warming significantly
exacerbates the adverse effects of soil water stress, and their synergistic interactions might reduce the plant productivity
and constrain its distribution in the region dominated by L. chinensis, based on predictions of global climate change. 相似文献
5.
Bacillus cereus strain XZM002 isolated from high arsenic aquifer sediments of Datong Basin was applied to examine the effects of arsenate stress on antioxidant enzyme activities, lipid peroxidation levels and cell growth inhibition rate. After 2 d exposure, the cell growth inhibition rate enhanced with an increase of As(V) concentrations (0, 800, 1600 μg/l). Reactive oxygen species and glutathione contents, lipid peroxidation levels, and antioxidant enzymes (glutathione peroxidase, and other three) activities of the treated cells were significantly higher than those of the controls during 3 d exposure (p < 0.05). Besides, the levels of nine parameters reached maximum after 2 d exposure and increased significantly with increasing arsenate stress (p < 0.05). However, they returned to levels similar to those of the control on the fourth day of exposure. The results suggested that the antioxidant defense system in B. cereus strain XZM002 could protect the cells from oxidative damage induced by arsenate. 相似文献
6.
Fuxin Zhao Jinyu Wu Anquan Xue Yanfeng Su Xiaojing Wang Xianmin Lu Zhonglou Zhou Jia Qu Xiangtian Zhou 《Human genetics》2013,132(8):913-921
Myopia is a refractive error of the eye that is prevalent worldwide. The most extreme form, high myopia, is usually associated with other ocular disorders such as retinal detachment, macular degeneration, cataract, and glaucoma, and is one of leading causes of blindness. The etiology is complex and has not been fully elucidated. In this study, we identified a novel missense variant of the CCDC111 gene (NM_152683.2: c.265T > G; p.Y89D) in a high myopia family by exome sequencing. The variant was identified in 4 patients from an additional 270 sporadic high myopia patients, but not found in 270 controls. The amino acid is highly conserved across species, and variants giving rise to amino acid substitutions are predicted to be functionally damaging. The CCDC111 gene was ubiquitously expressed in primary cell cultures from human eye tissue, including corneal epithelial cells, choroidal melanoma cells, scleral fibroblasts, retinal epithelial cells, retinal Müller cells, and lens capsule epithelial cells. In summary, our results suggested that the CCDC111 may be a susceptibility gene for high myopia. 相似文献
7.
8.
Xia Chen Aiqing Deng Hongzhi Zhou Jinhua Gu 《Molecular and cellular biochemistry》2013,373(1-2):149-159
In the present investigation, we used directed evolution approach to engineer a lipase from metagenomic origin. A variant S311C, was generated, characterized in detail and compared with wild type. Wild type and variant lipases were overexpressed and purified to homogeneity. The temperature optima of the purified lipases (Variant and wild type) were almost same, and found to be 45 and 50 °C, respectively. The variant protein was highly thermostable (54 times) as compared with the wild type at 60 °C. The variant displayed very high kinetic efficiency over the wild type protein. Analysis of the homology models of wild type and variant lipase showed that the substitution is on the surface of the protein. This substitution, along with hydrophobic residues in near vicinity may be involved in formation of strong hydrophobic channel leading to active site. This study identifies the role of hydrophobic interactions in protein stability along with enhancement of enzyme activity. 相似文献
9.
Guang-can Zhou Ying Wang Shan Zhai Feng Ge Zhong-hua Liu Yi-jun Dai Sheng Yuan Jun-yi Hou 《Applied microbiology and biotechnology》2013,97(9):4065-4074
Thiamethoxam (THIA), a second generation neonicotinoid insecticide in the thianicotinyl subclass, is used worldwide. Environmental studies revealed that microbial degradation is the major mode of removal of this pesticide from soil. However, microbial transformation of THIA is poorly understood. In the present study, we isolated a bacterium able to degrade THIA from rhizosphere soil. The bacterium was identified as Ensifer adhaerens by its morphology and 16S ribosomal DNA sequence analysis. High-performance liquid chromatography and mass spectrometry analysis suggested that the major metabolic pathway of THIA in E. adhaerens TMX-23 involves the transformation of its N-nitroimino group (=N–NO2) to N-nitrosoimino (=N–NO) and urea (=O) metabolites. E. adhaerens TMX-23 is a nitrogen-fixing bacterium harboring two types of nifH genes in its genome, one of which is 98 % identical to the nifH gene in the cyanobacterium Calothrix sp. MCC-3A. E. adhaerens TMX-23 released various plant-growth-promoting substances including indole-3-acetic acid, exopolysaccharides, ammonia, HCN, and siderophores. Inoculation of E. adhaerens TMX-23 onto soybean seeds (Glycine max L.) with NaCl at 50, 100, or 154 mmol/L increased the seed germination rate by 14, 21, and 30 %, respectively. THIA at 10 mg/L had beneficial effects on E. adhaerens TMX-23, enhancing growth of the bacterium and its production of salicylic acid, an important plant phytohormone associated with plant defense responses against abiotic stress. The nitrogen-fixing and plant-growth-promoting rhizobacterium E. adhaerens TMX-23, which is able to degrade THIA, has the potential for bioaugmentation as well as to promote growth of field crops in THIA-contaminated soil. 相似文献
10.
Yu-Cai He Cui-Luan Ma Zhen-Xing Yang Min Zhou Zhen Xing Jiang-Tao Ma Hui-Lei Yu 《Applied microbiology and biotechnology》2013,97(24):10329-10337
Enantiopure sulfoxides can be prepared via the asymmetric oxidation of sulfides using sulfide monooxygenases. The n-octane–water biphasic system was chosen for the bio-oxidation of a water-insoluble phenyl methyl sulfide (PMS) by Rhodococcus sp. CCZU10-1. In this n-octane–water system, the optimum reaction conditions were obtained. (S)-phenyl methyl sulfoxide ((S)-PMSO) with >99.9 % enantiomeric excess formed at 55.3 mM in the n-octane–water biphasic system. Using fed-batch method, a total of 118 mM (S)-PMSO accumulated in 1-L reaction mixture after the 7th feed, and no (R)-PMSO and sulfone were detected. Moreover, Rhodococcus sp. CCZU10-1 displayed fairly good activity and enantioselectivity toward other sulfides. In conclusion, Rhodococcus sp. CCZU10-1 is a promising biocatalyst for synthesizing highly optically active sulfoxides. 相似文献