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71.
《Bioorganic & medicinal chemistry letters》2020,30(11):127150
People with reduced esterase D (ESD) activity are susceptible to many diseases. However, how to activate ESD is still unknown. To address the question, we identified that 4-chloro-2-(5-phenyl-1-(pyridin-2-yl)-4, 5-dihydro-1H-pyrazol-3-yl) phenol (FPD5) could be a good candidate activator for ESD activity. We found that FPD5 could increase ESD activity in a dose-dependent way. FPD5 bound directly to ESD at Lys180 rather than its ubiquitination site Lys213. Site-directed mutagenesis at the binding site or the ubiquitination site inhibited FPD5 action. FPD5 increased the level of ESD mono-ubiquitination and mutESD K213A completely inhibited this action. Our findings highlighted the activation mechanism of ESD via promoting the mono-ubiquitination of ESD. 相似文献
72.
73.
Vidal M 《FEBS letters》2005,579(8):1834-1838
A long-term goal of the field of interactome modeling is to understand how global and local properties of complex macromolecular networks impact on observable biological properties, and how changes in such properties can lead to human diseases. The information available at this stage of development of the field provides strong evidence for the existence of such interesting global and local properties, but also demonstrates that many more datasets will be needed to provide accurate models with increasingly predictive capacity. This review focuses on an early attempt at mapping a multicellular interactome network and on the lessons learned from that attempt. 相似文献
74.
We have previously reported that the isolated frog corneal epithelium (a Cl–-secreting epithelium) has a large diffusional water permeability (Pdw 1.8×10–4 cm/s). We now report that the presence of Cl– in the apical-side bathing solution increases the diffusional water flux, Jdw (in both directions) by 63% from 11.3 to 18.4 l min–1 · cm–2 with 60 mm [Cl] exerting the maximum effect. The presence of Cl– in the basolateral-side bathing solution had no effect on the water flux. In Cl–-free solutions amphotericin B increased Jdw by 29% but only by 3% in Cl–-rich apical-side bathing solution, suggesting that in Cl–-rich apical side bathing solution, the apical barrier is no longer rate limiting. Apical Br– (75 mm) also increased Jdw by 68%. The effect of Cl– on Jdw was observed within 1 min after its addition to the apicalside bathing solution. HgCl2 (0.5 mm) reduced the Cl–-increased Pdw by 31%. The osmotic permeability (Pf) was also measured under an osmotic gradient yielding values of 0.34 and 2.88 (x 10–3 cm/s) in Cl–-free and Cl–-rich apical-side bathing solutions respectively. It seems that apical Cl–, or Cl– secretion into the apical bath could activate normally present but inactive water channels. In the absence of Cl–, water permeability of the apical membrane seems to be limited to the permeability of the lipid bilayer.This work was supported by National Eye Institute grants EY-00160 and EY-01867. 相似文献
75.
Changes in DNA supertwist as a response of Bacillus subtilis towards different kinds of stress 总被引:1,自引:0,他引:1
Abstract The silent parD ( kis/kid ) stability operon of plasmid R1 is normally repressed by the co-ordinated action of the Kis and Kid proteins. In this report it is shown that a mutation in repA , the gene of the plasmid replication protein, that reduces two-fold the copy number of the plasmid, leads to the derepression of the parD system. This derepression can be prevented by a suppressor mutation in copB, a copy number control gene of plasmid R1, that increases the efficiency of replication of the repA mutant. Derepression of the wild-type parD system leads to high plasmid stability. These data show the activation of a plasmid stability operon by a mutation that reduces the efficiency of wild-type plasmid replication. 相似文献
76.
Chemokines are small secreted proteins that are essential for the recruitment and activation of specific leukocyte subsets at sites of inflammation and for the development and homeostasis of lymphoid and nonlymphoid tissues. During the past decade, chemokines and their receptors have also emerged as key signaling molecules in neuroinflammatory processes and in the development and functioning of the central nervous system. Neurons and glial cells, including astrocytes, oligodendrocytes, and microglia, have been identified as cellular sources and/or targets of chemokines produced in the central nervous system in physiological and pathological conditions. In this article, we provide an update of chemokines and chemokine receptors expressed by glial cells focusing on their biological functions and implications in neurological diseases. 相似文献
77.
目的:通过研究COX-2、PGE2、EP2受体及小胶质细胞在甲基苯丙胺中毒大鼠纹状体内的表达变化探讨甲基苯丙胺中毒大鼠纹状体中COX-2/PGE2系统与小胶质细胞活化之间的关系。方法:将40只健康成年雄性SD大鼠,随机分成对照组10只和实验组30只(实验组分成三个亚组,分为末次给药后1天组、2天组和3天组,n=10)。实验组给予10mg/kg的MA腹腔注射,对照组给予同样剂量的生理盐水,每天注射两次,注射时间为8:00、20:00,连续注射4天。分别于末次给药后的第1天、第2天、第3天处杀。用免疫组化技术对中毒大鼠纹状体(CPU)中COX-2、EP2受体及Iba1(钙离子接头蛋白,小胶质细胞内一种特异性标记物)的表达进行检测,并进行图像分析。另外,取大鼠的纹状体运用酶联免疫法检测PGE2的含量。结果:COX-2、PGE2、EP2受体及小胶质细胞在各组均有表达。与对照组相比,实验组中:COX-2、PGE2、EP2受体的1天组表达均不同程度下降;2天组中COX-2表达水平大幅度上升,PGE2、EP2受体表达仍低于正常水平;3天组COX-2表达水平继续升高,而PGE2、EP2受体表达趋于正常组水平。而小胶质细胞表达水平则是三个实验组均高于正常组,且3天组高于2天组,2天组高于l天组。对照组与实验组有显著性差异(P〈0.05)。结论:COX-2/PGE2系统与甲基苯丙胺中毒大鼠纹状体内小胶质细胞活化无明显相关性;COX-2与甲基苯丙胺的神经毒性有关。 相似文献
78.
Chemokine signals activate leukocyte integrins and actin remodeling machineries critical for leukocyte adhesion and motility across vascular barriers. The arrest of leukocytes at target blood vessel sites depends on rapid conformational activation of their α4 and β2 integrins by the binding of endothelial-displayed chemokines to leukocyte Gi-protein coupled receptors (GPCRs). A universal regulator of this event is the integrin-actin adaptor, talin1. Chemokine-stimulated GPCRs can transmit within fractions of seconds signals via multiple Rho GTPases, which locally raise plasma membrane levels of the talin activating phosphatidyl inositol, PtdIns(4,5)P2 (PIP2). Additional pools of GPCR stimulated Rac-1 and Rap-1 GTPases together with GPCR stimulated PLC and PI3K family members regulate the turnover of focal contacts of leukocyte integrins, induce the collapse of leukocyte microvilli, and promote polarized leukocyte crawling in search of exit cues. Concomitantly, other leukocyte GTPases trigger invasive protrusions into and between endothelial cells in search of basolateral chemokine exit cues. We will review here major findings and open questions related to these sequential guiding activities of endothelial presented chemokines, focusing mainly on lymphocyte-endothelial interactions as a paradigm for other leukocytes. 相似文献
79.
Barley leaf protoplasts were incubated in light or darkness in the presence of various inhibitors, metabolites or weak acids/bases. Nitrate reductase (NR) and phosphoenolpyruvate carboxylase (PEPCase) were rapidly extracted from the protoplasts and assayed under sub-optimal conditions, i.e. in the presence of Mg2+ and malate, respectively. Under these conditions changes in activities are thought to reflect changes in the phosphorylation states of the enzymes. The NR was activated by illumination to 90% of its maximal activity within 10 min. Photosynthetic electron transport appeared necessary for light activation of NR since activation was inhibited by the photosynthetic electron-transport inhibitor 3-(3,4-dichlorophenyl)-1,1-dimethylurea (DCMU), and, additionally, an electron acceptor (HCO
3
-
) was required. The PEPCase was also activated by light. However, this activation was not prevented by DCMU or lack of HCO
3
-
. Loading of protoplasts in the dark with a weak acid resulted in activation of both NR and PEPCase. For NR, full activation was completed within 5 min, whereas for PEPCase a slower, modest activation continued for at least 40 min. Incubation of protoplasts with a weak base also gave activation of PEPCase, but not of NR. On the contrary, base loading counteracted light activation of NR. Since several treatments tested resulted in the modulation of either NR or PEPCase activity, but not both, signal transduction cascades leading to changes in activities appear to be very different for the two enzymes.Abbreviations DCMU
3-(3,4-dichlorophenyl)-1,1-dimethylurea (diuron)
- DMO
5,5-dimethyl-2,4 oxazolidinedione
- NR
nitrate reductase
- PEPCase
Phosphoenolpyruvate carboxylase
This work was supported by the Norwegian Research Council by a Grant to C.L: L.H.S. was supported by the Biotechnology and Biological Sciences Research Council. 相似文献
80.