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11.
本文用哺乳动物细胞系表达的乙型肝炎病毒表面抗原(HBsAg),制备了HBsAg的微团化(Micelle)和免疫剂激复合物(Immune-stimulating Complexes,简称ISCOMS)两种形式的抗原。在电镜下观察,微团化抗原是由球形亚单位颗粒组成直径100~150nm的较原颗粒大得多的大颗粒,在蔗糖中的浮力密度为1.24g/ml;而ISCOMS在电镜下为直径30~40nm左右稍大于原颗粒的多面体形态颗粒。SDS-PAGE分析表明,这两种形式的颗粒都是由HBsAg的P23和GP27蛋白所组成。 小鼠免疫接种结果显示,ISCOMS的免疫原性优于微团化抗原,后者又优于原22nm HBsAg颗粒。在抗体产生的速度和强度上,ISCOMS组显著优于微团化抗原组,而微团化抗原组略优于22nm HBsAg组。 ISCOMS的免疫性强,抗体产生早,强度高,又易于制备,而且不需要使用氢氧化铝胶佐剂,有可能发展成为一种新一代的乙型肝炎疫苗。  相似文献   
12.
蝮蛇毒抗凝血活酶组分及蝗蛇毒、圆斑蝰蛇毒和眼镜蛇毒粗毒,不仅能够水解血浆中的磷脂,而且还能水解完整人红细胞膜和完整人血小板膜上的磷脂。但是五步蛇毒和金环蛇毒粗毒却不能水解完整人血小板膜上的磷脂。 扫描电镜观察表明,由于抗凝血活酶组份和几种蛇毒粗毒的作用,人红细胞和人血小板的形态发生了巨大的变化;人红细胞由正常的双圆盘形变成带刺的小球,人血小板的外形变成蜂窝状。  相似文献   
13.
氨基酰化酶中金属锌离子的功能作用   总被引:1,自引:0,他引:1  
 氨基酰化酶是含锌金属酶。该酶每摩尔蛋白中含2摩尔Zn(Ⅱ)离子。金属鳌合剂与酶作用,通过竞争螯合Zn(Ⅱ)离子使酶活力下降。残余活力与残留金属含量呈正相关。竞争螯合的结果,生成不含金属的脱辅基酶蛋白,并导致酶活力的丧失。脱辅基酶由于加入Zn(Ⅱ)离子而恢复其活力。实验表明金属锌离子是氨基酰化酶催化活力所必需。与Zn(Ⅱ)离子相似,Co(Ⅱ)离子也可与脱辅基酶相结合并使之复活。 在190—240nm区域内对比了天然酶、脱辅基酶蛋白与Co(Ⅱ)置换氨基酰化酶的圆二色谱。远紫外圆二色谱表明,与天然酶相比,在脱辅基酶中由于金属离子的丧失导致主链构象发生变化,其中α螺旋增加约7%。因而锌离子(钴离子)对蛋白主链的反应最适构象有一定的稳定作用。脱辅基酶与Co(Ⅱ)离子结合,酶的主链构象恢复至与天然酶几近相同。可认为这是促使酶复活的内在因素。  相似文献   
14.
The Saccharomyces cerevisiae strain AH22 was capable of human P4501A1 expression without detectable background of yeast P450, unlike ATCC44773. Repeated backcrossing to AH22 produced a strain allowing transformation by vectors carrying various common selectable markers. Background yeast xenobiotic metabolism was observed only with growth on complex medium.  相似文献   
15.
金属螯合亲和层析纯化金属硫蛋白   总被引:9,自引:0,他引:9  
将二价铜离子螯合在Chelating Sepharose Fast Flow凝胶上制成亲和层析柱,锌诱导兔肝和镉诱导小鼠肝经匀浆、乙醇处理后上柱,用pH4.0的醋酸盐缓冲液平衡,再用pH5.2不同浓度的醋酸盐缓冲液分别洗脱,可得两个金属硫蛋白(MT)洗脱峰,经确定先后为MT-2和MT-1.分离方法比传统的凝胶过滤-离子交换法简单、省时,适于实验室规模分离纯化.  相似文献   
16.
The mdx mouse has been used as an animal model for human Duchenne muscular dystrophy (DMD). Unlike DMD, skeletal muscles of mdx mice undergo successful regeneration and do not show extensive fibrosis and functional impairment. Growth factors have been proposed to be involved in muscle growth and regeneration. We compared mitogenic activity for skeletal myoblasts released after injury in mdx and control mice, using crushed muscle extract (CME) as a model system. We found that CMEs from normal and mdx mice contained similar mitogenic activities per microgram protein, and produced similar maximal levels of mitogenic stimulation. Skeletal muscles from mdx mice, however, released higher amounts of CME protein per gram of muscle weight compared to controls, possibly as a result of histological or physiological alterations in mdx muscle tissue. Adequate mitogenic activity in CME from mdx muscles may be related to successful muscle regeneration in mdx mice.  相似文献   
17.

Aim

Understanding how species' traits and environmental contexts relate to extinction risk is a critical priority for ecology and conservation biology. This study aims to identify and explore factors related to extinction risk between herbaceous and woody angiosperms to facilitate more effective conservation and management strategies and understand the interactions between environmental threats and species' traits.

Location

China.

Taxon

Angiosperms.

Methods

We obtained a large dataset including five traits, six extrinsic variables, and 796,118 occurrence records for 14,888 Chinese angiosperms. We assessed the phylogenetic signal and used phylogenetic generalized least squares regressions to explore relationships between extinction risk, plant traits, and extrinsic variables in woody and herbaceous angiosperms. We also used phylogenetic path analysis to evaluate causal relationships among traits, climate variables, and extinction risk of different growth forms.

Results

The phylogenetic signal of extinction risk differed among woody and herbaceous species. Angiosperm extinction risk was mainly affected by growth form, altitude, mean annual temperature, normalized difference vegetation index, and precipitation change from 1901 to 2020. Woody species' extinction risk was strongly affected by height and precipitation, whereas extinction risk for herbaceous species was mainly affected by mean annual temperature rather than plant traits.

Main conclusions

Woody species were more likely to have higher extinction risks than herbaceous species under climate change and extinction threat levels varied with both plant traits and extrinsic variables. The relationships we uncovered may help identify and protect threatened plant species and the ecosystems that rely on them.  相似文献   
18.
Soil bacteria are diverse and form complicated ecological networks through various microbial interactions, which play important roles in soil multi-functionality. However, the seasonal effects on the bacterial network, especially the relationship between bacterial network topological features and soil resistomes remains underexplored, which impedes our ability to unveil the mechanisms of the temporal-dynamics of antibiotic resistance genes (ARGs). Here, a field investigation was conducted across four seasons at the watershed scale. We observed significant seasonal variation in bacterial networks, with lower complexity and stability in autumn, and a wider bacterial community niche in summer. Similar to bacterial communities, the co-occurrence networks among ARGs also shift with seasonal change, particularly with respect to the topological features of the node degree, which on average was higher in summer than in the other seasons. Furthermore, the nodes with higher betweenness, stress, degree, and closeness centrality in the bacterial network showed strong relationships with the 10 major classes of ARGs. These findings highlighted the changes in the topological properties of bacterial networks that could further alter antibiotic resistance in soil. Together, our results reveal the temporal dynamics of bacterial ecological networks at the watershed scale, and provide new insights into antibiotic resistance management under environmental changes.  相似文献   
19.
Heterozygous alleles are widespread in outcrossing and clonally propagated woody plants. The variation in heterozygosity that underlies population adaptive evolution and phenotypic variation, however, remains largely unknown. Here, we describe a de novo chromosome-level genome assembly of Populus tomentosa, an economic and ecologically important native tree in northern China. By resequencing 302 natural accessions, we determined that the South subpopulation (Pop_S) encompasses the ancestral strains of P. tomentosa, while the Northwest subpopulation (Pop_NW) and Northeast subpopulation (Pop_NE) experienced different selection pressures during population evolution, resulting in significant population differentiation and a decrease in the extent of heterozygosity. Analysis of heterozygous selective sweep regions (HSSR) suggested that selection for lower heterozygosity contributed to the local adaptation of P. tomentosa by dwindling gene expression and genetic load in the Pop_NW and Pop_NE subpopulations. Genome-wide association studies (GWAS) revealed that 88 single nucleotide polymorphisms (SNPs) within 63 genes are associated with nine wood composition traits. Among them, the selection for the homozygous AA allele in PtoARF8 is associated with reductions in cellulose and hemicellulose contents by attenuating PtoARF8 expression, and the increase in lignin content is attributable to the selection for decreases in exon heterozygosity in PtoLOX3 during adaptive evolution of natural populations. This study provides novel insights into allelic variations in heterozygosity associated with adaptive evolution of P. tomentosa in response to the local environment and identifies a series of key genes for wood component traits, thereby facilitating genomic-based breeding of important traits in perennial woody plants.  相似文献   
20.
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