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1.
Experiments were carried out to elucidate the role of central catecholamines in regulating catecholamine metabolism in the vas deferens and adrenal gland of the rat. Rats were injected intracerebroventricularly (i.c.v.) with either vehicle or 6-hydroxydopamine (6-OHDA). Groups of animals pretreated with vehicle or 6-OHDA (i.c.v.) were injected intraperitoneally (i.p.) with alpha-methyl-para-tyrosine (AMT), a tyrosine hydroxylase inhibitor. Catecholamine turnover rates were estimated by determining norepinephrine or epinephrine content after administrating AMT.Central norepinephrine and dopamine contents decreased significantly (p<0.05) after treatment with 6-OHDA and AMT. The norepinephrine content of the vas deferens of rats pretreated with 6-OHDA was markedly reduced (p<0.001) after administration of AMT, whereas that of the vehicle-treated rats remained unchanged. Administration of 6-OHDA had no effect on the norepinephrine or epinephrine content of the adrenal gland.The present results indicate that central monoaminergic neurons have an inhibitory effect on the adrenergic neurons of the vas deferens. In contrast, this inhibitory regulation does not appear to be exerted on the adrenal glands.  相似文献   
2.
AcrB and its homologues are the principal multidrug transporters in Gram-negative bacteria and are important in antibiotic drug tolerance. AcrB is a homotrimer that acts as a tripartite complex with the outer membrane channel TolC and the membrane fusion protein AcrA. Minocycline and doxorubicin have been shown to bind to the phenylalanine cluster region of the binding monomer. Here we report the crystal structures of AcrB bound to the high-molecular-mass drugs rifampicin and erythromycin. These drugs bind to the access monomer, and the binding sites are located in the proximal multisite binding pocket, which is separated from the phenylalanine cluster region (distal pocket) by the Phe-617 loop. Our structures indicate that there are two discrete multisite binding pockets along the intramolecular channel. High-molecular-mass drugs first bind to the proximal pocket in the access state and are then forced into the distal pocket in the binding state by a peristaltic mechanism involving subdomain movements that include a shift of the Phe-617 loop. By contrast, low-molecular-mass drugs, such as minocycline and doxorubicin, travel through the proximal pocket without specific binding and immediately bind to the distal pocket. The presence of two discrete, high-volume multisite binding pockets contributes to the remarkably broad substrate recognition of AcrB.  相似文献   
3.
Y Yamaguchi  E Ruoslahti 《Nature》1988,336(6196):244-246
In studying the functional role of an extracellular matrix proteoglycan, decorin, we have made observations that suggest a role for this proteoglycan in the control of cell proliferation. Extracellular matrices are made up of different combinations of collagens, elastin, hyaluronic acid, proteoglycans and various glycoproteins such as fibronectin. Most of these components can interact with cells, and much of the control of cell adhesion, migration and differentiation appears to be mediated by these interactions. Earlier studies have also attributed growth-regulatory activities to intact extracellular matrices, but the individual molecules responsible for these effects have not been characterized. We report here that Chinese hamster ovary (CHO) cell lines expressing human decorin from a stably transfected complementary DNA construct form a more orderly monolayer and grow to a lower saturation density than control cells lacking decorin. The extent of the morphological changes correlates with the level of decorin expression, and the saturation density is inversely proportional to it. The reduction in the saturation densities of the cell lines with the highest expression of decorin is more than 50%. These results reveal a novel growth inhibitory mechanism which may be related to contact inhibition of cell proliferation.  相似文献   
4.
Ultrahigh-quality silicon carbide single crystals   总被引:1,自引:0,他引:1  
Nakamura D  Gunjishima I  Yamaguchi S  Ito T  Okamoto A  Kondo H  Onda S  Takatori K 《Nature》2004,430(7003):1009-1012
Silicon carbide (SiC) has a range of useful physical, mechanical and electronic properties that make it a promising material for next-generation electronic devices. Careful consideration of the thermal conditions in which SiC [0001] is grown has resulted in improvements in crystal diameter and quality: the quantity of macroscopic defects such as hollow core dislocations (micropipes), inclusions, small-angle boundaries and long-range lattice warp has been reduced. But some macroscopic defects (about 1-10 cm(-2)) and a large density of elementary dislocations (approximately 10(4) cm(-2)), such as edge, basal plane and screw dislocations, remain within the crystal, and have so far prevented the realization of high-efficiency, reliable electronic devices in SiC (refs 12-16). Here we report a method, inspired by the dislocation structure of SiC grown perpendicular to the c-axis (a-face growth), to reduce the number of dislocations in SiC single crystals by two to three orders of magnitude, rendering them virtually dislocation-free. These substrates will promote the development of high-power SiC devices and reduce energy losses of the resulting electrical systems.  相似文献   
5.
Crystal structure of bacterial multidrug efflux transporter AcrB   总被引:59,自引:0,他引:59  
Murakami S  Nakashima R  Yamashita E  Yamaguchi A 《Nature》2002,419(6907):587-593
AcrB is a major multidrug exporter in Escherichia coli. It cooperates with a membrane fusion protein, AcrA, and an outer membrane channel, TolC. We have determined the crystal structure of AcrB at 3.5 A resolution. Three AcrB protomers are organized as a homotrimer in the shape of a jellyfish. Each protomer is composed of a transmembrane region 50 A thick and a 70 A protruding headpiece. The top of the headpiece opens like a funnel, where TolC might directly dock into AcrB. A pore formed by three alpha-helices connects the funnel with a central cavity located at the bottom of the headpiece. The cavity has three vestibules at the side of the headpiece which lead into the periplasm. In the transmembrane region, each protomer has twelve transmembrane alpha-helices. The structure implies that substrates translocated from the cell interior through the transmembrane region and from the periplasm through the vestibules are collected in the central cavity and then actively transported through the pore into the TolC tunnel.  相似文献   
6.
The development of the embryonic brain critically depends on successfully completing cranial neural tube closure (NTC). Failure to properly close the neural tube results in significant and potentially lethal neural tube defects (NTDs). We believe these malformations are caused by disruptions in normal developmental programs such as those involved in neural plate morphogenesis and patterning, tissue fusion, and coordinated cell behaviors. Cranial NTDs include anencephaly and craniorachischisis, both lethal human birth defects. Newly emerging methods for molecular and cellular analysis offer a deeper understanding of not only the developmental NTC program itself but also mechanical and kinetic aspects of closure that may contribute to cranial NTDs. Clarifying the underlying mechanisms involved in NTC and how they relate to the onset of specific NTDs in various experimental models may help us develop novel intervention strategies to prevent NTDs.  相似文献   
7.
针对油气储运中稠油输送的热输效应问题,讨论了热管输油的最佳方法及其选择,指出了热管输油最佳方法应该具备的两个"最低"条件,分析了输油站与加热站的温压、平衡及费用变化方程,提出了热管输油的最佳算法,总结了热管输油的最佳工况,讨论了热管输油的经济效益,对稠油的开采与传送及油气经济学具有重要指导意义。  相似文献   
8.
在泰国 ,从 2 0世纪 6 0年代到 80年代中期 ,同姓团体的一种类型———宗亲总会持续不断地产生。创立宗亲总会目的在于一是为华人的族群认同提供依据。二是宗亲总会所建的大宗祠是象征华人民族群体的具有纪念碑意义的建筑物。同姓团体其大宗祠的建设标志着泰国华人社会的文化复兴运动的兴起。  相似文献   
9.
Injection of glucose in the portal vein, as well as in the left carotid artery, brought a transient decrease in efferent discharges of the gastric vagus nerve, whereas venous injection of regular insulin brought a gradual increase in the discharges.  相似文献   
10.
Mitochondria play an important role in energy production, Ca2+ homeostasis and cell death. In recent years, the role of the mitochondria in apoptotic and necrotic cell death has attracted much attention. In apoptosis and necrosis, the mitochondrial permeability transition (mPT), which leads to disruption of the mitochondrial membranes and mitochondrial dysfunction, is considered to be one of the key events, although its exact role in cell death remains elusive. We therefore created mice lacking cyclophilin D (CypD), a protein considered to be involved in the mPT, to analyse its role in cell death. CypD-deficient mice were developmentally normal and showed no apparent anomalies, but CypD-deficient mitochondria did not undergo the cyclosporin A-sensitive mPT. CypD-deficient cells died normally in response to various apoptotic stimuli, but showed resistance to necrotic cell death induced by reactive oxygen species and Ca2+ overload. In addition, CypD-deficient mice showed a high level of resistance to ischaemia/reperfusion-induced cardiac injury. Our results indicate that the CypD-dependent mPT regulates some forms of necrotic death, but not apoptotic death.  相似文献   
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