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901.
The objectives of this study were to investigate the moisture-induced protein aggregation of whey protein powders and to elucidate the relationship of protein stability with respect to water content and glass transition. Three whey protein powder types were studied: whey protein isolate (WPI), whey protein hydrolysates (WPH), and beta-lactoglobulin (BLG). The water sorption isotherms were determined at 23 and 45°C, and they fit the Guggenheim–Andersson–DeBoer (GAB) model well. Glass transition was determined by differential scanning calorimeter (DSC). The heat capacity changes of WPI and BLG during glass transition were small (0.1 to 0.2 Jg−1 °C−1), and the glass transition temperature (T g) could not be detected for all samples. An increase in water content in the range of 7 to 16% caused a decrease in T g from 119 down to 75°C for WPI, and a decrease from 93 to 47°C for WPH. Protein aggregation after 2 weeks’ storage was measured by the increase in insoluble aggregates and change in soluble protein fractions. For WPI and BLG, no protein aggregation was observed over the range of 0 to 85% RH, whereas for WPH, ∼50% of proteins became insoluble after storage at 23°C and 85% RH or at 45°C and ≥73% RH, caused mainly by the formation of intermolecular disulfide bonds. This suggests that, at increased water content, a decrease in the T g of whey protein powders results in a dramatic increase in the mobility of protein molecules, leading to protein aggregation in short-term storage.  相似文献   
902.
Elevated creatine kinase (CK) in the circulation was generally regarded to be a passive release from muscle damage. We utilized proteomic methodologies to characterize amphioxus humoral fluid APPs in response to caudal trauma, and found several spots of CK alterations with up-regulation and pI shift. Its amount and enzyme activity showed a dynamic pattern of APP in humoral fluid accompanied with a reduction in enzyme activity of muscle, whereas there was no significant difference in CK amount of muscle and the other tissues and in CK enzyme activity of the other tissues between different time points of sample collection following caudal trauma. In addition, CK phosphorylation regulation during injury was not achieved by monoclonal antibodies separately against phosphothreonine, phosphotyrosine, and phosphoserine. These results suggested that the CK elevation of humoral fluid might be from muscle, being an active response to caudal trauma rather than a passive release from muscle damage. Therefore, CK ability in response to caudal trauma should be highly concerned.  相似文献   
903.
Xu M  Zhou P  Xu SM  Liu Y  Feng X  Bai SH  Bai Y  Hao XM  Han Q  Zhang Y  Wang SQ 《PLoS biology》2007,5(2):e21
Pressure overload–induced hypertrophy is a key step leading to heart failure. The Ca2+-induced Ca2+ release (CICR) process that governs cardiac contractility is defective in hypertrophy/heart failure, but the molecular mechanisms remain elusive. To examine the intermolecular aspects of CICR during hypertrophy, we utilized loose-patch confocal imaging to visualize the signaling between a single L-type Ca2+ channel (LCC) and ryanodine receptors (RyRs) in aortic stenosis rat models of compensated (CHT) and decompensated (DHT) hypertrophy. We found that the LCC-RyR intermolecular coupling showed a 49% prolongation in coupling latency, a 47% decrease in chance of hit, and a 72% increase in chance of miss in DHT, demonstrating a state of “intermolecular failure.” Unexpectedly, these modifications also occurred robustly in CHT due at least partially to decreased expression of junctophilin, indicating that intermolecular failure occurs prior to cellular manifestations. As a result, cell-wide Ca2+ release, visualized as “Ca2+ spikes,” became desynchronized, which contrasted sharply with unaltered spike integrals and whole-cell Ca2+ transients in CHT. These data suggested that, within a certain limit, termed the “stability margin,” mild intermolecular failure does not damage the cellular integrity of excitation-contraction coupling. Only when the modification steps beyond the stability margin does global failure occur. The discovery of “hidden” intermolecular failure in CHT has important clinical implications.  相似文献   
904.
Recent advances in high throughput experiments and annotations via published literature have provided a wealth of interaction maps of several biomolecular networks, including metabolic, protein-protein, and protein-DNA interaction networks. The architecture of these molecular networks reveals important principles of cellular organization and molecular functions. Analyzing such networks, i.e., discovering dense regions in the network, is an important way to identify protein complexes and functional modules. This task has been formulated as the problem of finding heavy subgraphs, the heaviest k-subgraph problem (k-HSP), which itself is NP-hard. However, any method based on the k-HSP requires the parameter k and an exact solution of k-HSP may still end up as a "spurious" heavy subgraph, thus reducing its practicability in analyzing large scale biological networks. We proposed a new formulation, called the rank-HSP, and two dynamical systems to approximate its results. In addition, a novel metric, called the standard deviation and mean ratio (SMR), is proposed for use in "spurious" heavy subgraphs to automate the discovery by setting a fixed threshold. Empirical results on both the simulated graphs and biological networks have demonstrated the efficiency and effectiveness of our proposal  相似文献   
905.
介绍了旅游管理信息系统的特点,分析了该系统在设计、运行中出现的安全性、实效性和规范性等方面的问题,并给出了相应的解决对策。  相似文献   
906.
In this work, a highly sensitive biosensor for detecting cadmium ions (Cd2+) was developed based on a Cd2+-specific DNA aptamer and a hybridization chain reaction (HCR). The Cd2+ aptamer (named S0) was used to recognize Cd2+ and trigger the HCR. Without Cd2+, S0 initiated the HCR to form long nicked dsDNA structures to quench the fluorescence. Then, Cd2+ could bind with S0 to block HCR to recover fluorescence. This biosensor had high sensitivity with a detection limit of 0.36 nM and a linear range from 0 to 10 nM. Moreover, it showed a satisfactory selectivity and recovery rates.  相似文献   
907.
李鹏  庄文颖 《菌物学报》2022,41(2):281-290
液态发酵条件下,以微晶纤维素为唯一碳源,比较了拟康宁木霉Trichoderma koningiopsis 8985和里氏木霉T. reesei QM9414产纤维素酶的能力。8985发酵12 h开始产生纤维素酶,36 h时酶活达到产酶峰值的50%,此时QM9414尚未诱导产酶。测定8985发酵84 h时上清液中滤纸纤维素酶、羧甲基纤维素酶、β-葡萄糖苷酶和木聚糖酶的酶活分别为1.06、3.62、1.80和6.67 IU/mL,分别是QM9414上述酶活的1.72、1.70、6.35和1.12倍。8985滤纸纤维素酶酶活的最适反应条件为pH 4.5,反应温度50 ℃,在Fe3+ (≤ 4 mmol/L)和Cu2+ (0-10 mmol/L)存在条件下酶活稳定。  相似文献   
908.
909.
为了研究HDACs(组蛋白去乙酰化酶)在白菜型冬油菜响应低温胁迫中的影响,该研究采用强抗寒品种‘陇油7号’、耐寒品种‘天油4号’和弱抗寒品种Lenox等白菜型冬油菜,分析HDACs抑制剂曲古抑菌素A(TSA)处理后白菜型冬油菜种子的萌发,及低温胁迫下抗氧化酶活性和渗透调节物质含量变化,并全基因组鉴定HDACs的基因家族,分析其在不同抗寒性白菜型冬油菜中的表达特性。结果表明:(1)1μmol/L和3μmol/L的TSA对3个品种的根长均具有抑制作用,不同温度下外源喷施TSA均可增加抗氧化酶活性和渗透调节物质含量。(2)在白菜型冬油菜中共鉴定出21个HDACs;系统发育分析显示,HDACs可分为3个亚家族,所有基因不均等分布在8条染色体上,但7号和8号染色体上没有基因分布;HDACs启动子序列中包含胁迫响应、光响应、激素应答等相关的作用元件。(3)组织表达结果显示,大部分基因在生长锥中表达量明显高于其他组织部位,BrapaHDA19、BrapaHDA6-1、BrapaHDA8和BrapaHDA7-2在白菜型冬油菜花中表达量较高,且BrapaHDA5-2在‘天油4号’的茎生叶、角果、新基叶和老基叶中的表达量较高,而BrapaHDA7-2在Lenox的花中表达量较高。(4)低温胁迫表达结果显示,BrapaHDA8、BrapaHDA14、BrapaHDA2、BrapaHDT2-2和BrapaHDA15-1在3个抗寒性不同的材料中呈现出差异表达。研究推测,所鉴定的这些基因可能在白菜型冬油菜生长发育及抗寒性方面发挥重要功能。  相似文献   
910.
当前, 全球昆虫数量和多样性均处于下降趋势, 而导致这一趋势的原因主要包括人为干扰及气候变化。本文基于森林、草地、农业、水生和土壤生态系统, 以植食性、访花、捕食性、寄生性、食果以及食腐昆虫为重点功能昆虫群, 综述了近三十年来国内外昆虫多样性研究领域的主要进展, 并分析了发展趋势。近年来, 昆虫多样性的研究维度不断拓展, 形态多样性研究不断深入, 系统发生多样性、功能多样性和遗传多样性等研究也显著加强。此外, 昆虫多样性研究的空间尺度也逐步扩大, 大尺度区域性研究甚至全球范围的调查持续增长。昆虫进化历史也被引入多样性格局研究中, 并随着系统发生信息学方法的普及而被整合到生态系统建成和生物多样性形成机制研究中。未来需要加强关键昆虫类群整合分类学研究、功能性状多样性、林冠昆虫多样性、互作网络结构等方向的研究。  相似文献   
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