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981.
982.
Reconstitution of the plant ubiquitination cascade in bacteria using a synthetic biology approach 下载免费PDF全文
Yufang Han Jianhang Sun Jun Yang Zhaoyun Tan Jijing Luo Dongping Lu 《The Plant journal : for cell and molecular biology》2017,91(4):766-776
Ubiquitination modulates nearly all aspects of plant life. Here, we reconstituted the Arabidopsis thaliana ubiquitination cascade in Escherichia coli using a synthetic biology approach. In this system, plant proteins are expressed and then immediately participate in ubiquitination reactions within E. coli cells. Additionally, the purification of individual ubiquitination components prior to setting up the ubiquitination reactions is omitted. To establish the reconstituted system, we co‐expressed Arabidopsis ubiquitin (Ub) and ubiquitination substrates with E1, E2 and E3 enzymes in E. coli using the Duet expression vectors. The functionality of the system was evaluated by examining the auto‐ubiquitination of a RING (really interesting new gene)‐type E3 ligase AIP2 and the ubiquitination of its substrate ABI3. Our results demonstrated the fidelity and specificity of this system. In addition, we applied this system to assess a subset of Arabidopsis E2s in Ub chain formation using E2 conjugation assays. Affinity‐tagged Ub allowed efficient purification of Ub conjugates in milligram quantities. Consistent with previous reports, distinct roles of various E2s in Ub chain assembly were also observed in this bacterial system. Therefore, this reconstituted system has multiple advantages, and it can be used to screen for targets of E3 ligases or to study plant ubiquitination in detail. 相似文献
983.
Fujimoto N Shibata S Hastings JL Carrick-Ranson G Bhella PS Palmer D Fu Q Levine BD 《American journal of physiology. Heart and circulatory physiology》2011,300(5):H1688-H1695
Pericardial constraint and ventricular interaction influence left ventricular (LV) performance when preload is high. However, it is unclear if these constraining forces modulate LV filling when the heart is unloaded, such as during upright posture, in humans. Fifty healthy individuals underwent right heart catheterization to measure pulmonary capillary wedge (PCWP) and right atrial pressure (RAP). To evaluate the effects of pericardial constraint on hemodynamics, transmural filling pressure (LVTMP) was defined as PCWP-RAP. Beat-to-beat blood pressure (BP) waveforms were recorded, and stroke volume (SV) was derived from the Modelflow method. After measurements at -30 mmHg lower body negative pressure (LBNP), which approximates the upright position, LBNP was released, and beat-to-beat measurements were performed for 15 heartbeats. At -30 mmHg LBNP, RAP and PCWP were significantly decreased. During the first six beats of LBNP release, heart rate (HR) was unchanged, while BP increased from the fourth beat. RAP increased faster than PCWP resulting in an acute decrease in LVTMP from the fourth beat. A corresponding drop in SV by 3% was observed with no change in pulse pressure. From the 7th to 15th beats, LVTMP and SV increased steadily, followed by a decreased HR due to the baroreflex. A decreased TMP, but not PCWP, caused a transient drop in SV with no changes in HR or pulse pressure during LBNP release. These results suggest that the pericardium constrains LV filling during LBNP release, enough to cause a small but significant drop of SV, even at low cardiac filling pressure in healthy humans. 相似文献
984.
Kwak SJ Paeng J Kim do H Lee SH Nam BY Kang HY Li JJ Jung DS Han SH Ryu DR Park JT Chang TI Yoo TH Han DS Kang SW 《Apoptosis : an international journal on programmed cell death》2011,16(5):478-490
The kallikrein-kinin system (KKS) serves as the physiologic counterbalance to the renin-angiotensin system. This study was conducted to examine the changes in the expression of KKS components in podocytes under diabetic conditions and to elucidate the functional role of bradykinin (BK) in diabetes-associated podocyte apoptosis. Thirty-two rats were injected with either diluent (n = 16, C) or with streptozotocin intraperitoneally (n = 16, DM), and 8 rats from each group were treated with BK infusion for 6 weeks. Immortalized mouse podocytes were cultured in media containing 5.6 mmol/l glucose (NG), NG + 10(-7) mol/l AII (AII), or 30 mmol/l glucose (HG) with or without 10(-8) mol/l BK. Urinary albumin excretion was significantly higher in DM rats, and this increase was ameliorated by BK. Not only kininogen, kallikrein, and BK B1- and B2-receptor expression but also BK levels were significantly decreased in DM glomeruli and in cultured podocytes exposed to HG. The changes in the expressions of apoptosis-related molecules and the increase in the number of apoptotic cells in DM glomeruli as well as in HG- and AII-stimulated podocytes were significantly abrogated by BK. The suppressed KSS within podocytes under diabetic condition was associated with podocyte apoptosis, suggesting that BK may be beneficial in preventing podocyte loss in diabetic nephropathy. 相似文献
985.
Jing Fu Huihui Yu Xianghua Li Jinghua Xiao Shiping Wang 《Plant signaling & behavior》2011,6(4):570-574
Auxin is an indispensable hormone throughout the lifetime of nearly all plant species. Several aspects of plant growth and development are rigidly governed by auxin, from micro to macro hierarchies; auxin also has a close relationship with plant-pathogen interactions. Undoubtedly, precise auxin levels are vitally important to plants, which have many effective mechanisms to maintain auxin homeostasis. One mechanism is conjugating amino acid to excessive indole-3-acetic acid (IAA; main form of auxin) through some GH3 family proteins to inactivate it. Our previous study demonstrated that GH3-2 mediated broad-spectrum resistance in rice (Oryza sativa L.) by suppressing pathogen-induced IAA accumulation and downregulating auxin signaling. Here, we further investigated the expression pattern of GH3-2 and other GH3 family paralogs in the life cycle of rice and presented the possible function of GH3-2 on rice root development by histochemical analysis of GH3-2 promoter:GUS reporter transgenic plants.Key words: auxin, GH3 gene, indole-3-acetic acid, Oryza sativa, rootThe phytohormone auxin regulates tropism and organ development and influences phyllotaxis, vascular canalization and root patterning by exerting its effect on cell division, elongation and differentiation in plants.1,2 Indole-3-acetic acid (IAA) is the most widespread form of auxin in most plants. Supraoptimal or insufficient concentration of auxin will cause plants to exhibit abnormal phenotypes. 3-9 Auxin homeostasis is partly sustained by the GH3 gene family, a supervisor of the fluctuation of auxin. Most GH3 genes contain auxin-responsive cis-acting elements (AuxRE) in their promoter regions and react rapidly and transiently to auxin signaling.1 Nineteen GH3 paralogs have been discovered in Arabidopsis.10 According to the phylogenetic relationship and acyl acid substrate preference, these genes are classified into three groups (I, II and III), which catalyze the formation of jasmonates, salicylic acid, 4-substituted benzoates or IAA acyl acid amido conjugates.11,12 The rice GH3 gene family includes 13 paralogs, 4 belonging to group I (GH3-3, -5, -6 and -12) and 9 to group II (GH3-1, -2, -4, -7, -8, -9, -10, -11 and -13); group III GH3 is absent in rice.10 Rice GH3-1, -2, -8 and -13 paralogs have been biochemically confirmed to have IAA-amido synthetase activity by in vivo or in vitro assays.6–9 It is believed that other GH3 group II paralogs in rice may also possess this enzymatic activity. But why does rice have such a functionally redundant group of GH3 proteins, which disobeys the economic principle? The explanation could be based on the different temporal and spatial expression of the genes encoding these proteins. 相似文献
986.
Fu Lijun An Xinli Li Dong Zhou Lijian Tian Yun Zheng Tianling 《World journal of microbiology & biotechnology》2011,27(12):2949-2956
The bacterium BS02 which is closely related to the genus Vibrio sp. and capable of inhibiting the toxic dinoflagellate Alexandrium tamarense was isolated from a mangrove area in Zhangjiangkou, Fujian Province, China. The bacterium was not species-specific since
it displayed varying degrees of lysing activities against eight of the eighteen algae tested. There was a close interaction
between initial bacterial and A. tamarense cell densities, indicating that algal growth was prompted at low bacterial concentrations, while the number of the alga cells
was reduced at high concentrations. Alga-lysing characterization of Vibrio sp. BS02 suggested that the alga-lysing substance was extracellularly produced, less than 500 in molecular weight, as well
as non proteinaceous, stable under wide range of temperature and pH conditions, UV radiation, repeated freezing and thawing
and heavy metal treatments. These findings suggested that BS02 could play an important role in controlling harmful algal blooms. 相似文献
987.
Feng-Xu?YuEmail author Jian-Juan?Ke Yong?Fu Bin?Liao Ying-Kang?Shi 《Molecular biology reports》2011,38(3):1723-1731
Disturbance of cardiac rhythm is one of the consequences of myocardial ischemia/reperfusion injury. Many researchers have
prompted considerable interests in developing therapeutic approaches for its control. In present study, we want to determine
whether that adenosine pre- and postconditioning have protective effects on sinoatrial node ischemia/reperfusion injury on
morphology, arrhythmia score, serological markers (CK-MB and cTnT), SOD activities, MDA levels and expression of HCN4 channels
in SA node cells. According to the arrhythmia score recorded, whether adenosine used in terms of ischemia or reperfusion,
the total number of arrhythmia was significantly reduced, as well as the number of its episodes was also markedly decreased.
We have also shown a clear correlation between HCN4 channels expression and the dysfunction of SA node cells. HCN4 immunoreactivity
decreased after adenosine pre- and postconditioning, but changes were significantly smaller in the cells of the SA node compared
with cells of I/R group. The content of cTnT, CK-MB and MDA in adenosine pre- and postconditioning group reduced significantly;
but the level of SOD increased significantly. Histological examination and electron microscopy observations found in adenosine
pre- and postconditioning group sinoatrial node injury also mitigated. These findings suggested that adenosine pre- or postconditioning
were to reduce the incidence of ischemia/reperfusion arrhythmias, reduce myocardial ischemia reperfusion injury. The mechanism
was to stabilize the SA node cells membrane and one possible mechanism involves modulation of HCN4 channels in pacemaker cells
of the sinoatrial node. 相似文献
988.
【目的】了解华南地区瓜类疫霉(Phytophthora melonis)对甲霜灵的田间抗药性。【方法】2007-2010年从广西、广东两省(区)9个市冬瓜和黄瓜产区采集疫病样品,分离纯化瓜类疫霉,分别采用菌落生长速率法和叶盘漂浮法测定瓜类疫霉对甲霜灵的敏感性,并用药剂驯化方法从敏感性菌株诱导瓜类疫霉抗甲霜灵突变体。【结果】从9个市24个样点共分离纯化获得193株瓜类疫霉,抗药性检测结果表明,敏感菌株、中等抗性菌株和抗性菌株分别占测试菌株的29.0%、18.1%和52.8%;不同地区、不同寄主分离的菌株的抗性频率和抗性水平差异较大,来源于广东的菌株抗性频率和抗性水平一般高于来源广西的菌株,分离自黄瓜的菌株高于分离自冬瓜的菌株,大部分样点抗性菌株占据优势群体,个别菌株的抗性指数高达4226.9,叶盘漂浮法测定结果和菌落生长速率法相似;在含药平板上对敏感菌株进行甲霜灵抗性诱导结果表明,从60%的敏感菌株中成功诱导出对甲霜灵抗性稳定的突变体,突变体的抗性水平为敏感性亲本的189-407倍;9株来源于未施用过甲霜灵等苯基酰胺类杀菌剂样点的菌株均为敏感性菌株,其EC50值为0.0429-0.5461μg/mL,将它们EC50的平均值0.3200±0.1617μg/mL确定为华南地区瓜类疫霉对甲霜灵的敏感性基线;对两个样点的监测结果表明,瓜类疫霉抗甲霜灵菌株的频率及抗性指数有逐年增高趋势。【结论】华南广西和广东两省(区)瓜类疫霉对甲霜灵抗性普遍发生,瓜类疫霉对甲霜灵抗药性产生与其和药剂的接触密切相关。瓜类疫霉敏感性基线的建立,可为今后瓜类疫霉抗甲霜灵的评价和进一步监测提供科学依据。 相似文献
989.
Caswell CC Han R Hovis KM Ciborowski P Keene DR Marconi RT Lukomski S 《Molecular microbiology》2008,67(3):584-596
Non-specific activation of the complement system is regulated by the plasma glycoprotein factor H (FH). Bacteria can avoid complement-mediated opsonization and phagocytosis through acquiring FH to the cell surface. Here, we characterize an interaction between the streptococcal collagen-like protein Scl1.6 of M6-type group A Streptococcus (GAS) and FH. Using affinity chromatography with immobilized recombinant Scl1.6 protein, we co-eluted human plasma proteins with molecular weight of 155 kDa, 43 kDa and 38 kDa. Mass spectrometry identified the 155 kDa band as FH and two other bands as isoforms of the FH-related protein-1. The identities of all three bands were confirmed by Western immunoblotting with specific antibodies. Structure-function relation studies determined that the globular domain of the Scl1.6 variant specifically binds FH while fused to collagenous tails of various lengths. This binding is not restricted to Scl1.6 as the phylogenetically linked Scl1.55 variant also binds FH. Functional analyses demonstrated the cofactor activity of the rScl1.6-bound FH for factor I-mediated cleavage of C3b. Finally, purified FH bound to the Scl1.6 protein present in the cell wall material obtained from M6-type GAS. In conclusion, we have identified a functional interaction between Scl1 and plasma FH, which may contribute to GAS evasion of complement-mediated opsonization and phagocytosis. 相似文献
990.
Linlin Jiang Yingbo Wang Shuhui Zhang Rui He Wei Li Jiao Han Xianguo Cheng 《Plant Growth Regulation》2017,81(1):131-145