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101.
Kavaliers M Agmo A Choleris E Gustafsson JA Korach KS Muglia LJ Pfaff DW Ogawa S 《Genes, Brain & Behavior》2004,3(4):189-195
Social behavior involves both the recognition and production of social cues. Mice with selective deletion (knockout) of either the gene for oxytocin (OT) or genes for the estrogen receptor (ER) -α or -β display impaired social recognition. In this study we demonstrate that these gene knockout mice also provide discriminably different social stimuli in behavioral assays. In an odor choice test, which is a measure of social interest and discrimination, outbred female Swiss-Webster mice discriminated the urine odors of male knockouts (KO: OTKO, αERKO, βERKO) from the odors of their wildtype littermates (WT: OTWT, αERWT, βERWT). Females showed marked initial choices of the urine odors of OTWT and βERWT males over those of OTKO and βERKO males, and αERKO males over αERWT males. The odors of OTKO and βERKO males also induced aversive, analgesic responses, with the odors of WTs having no significant effects. Odors of both the αERWT and αERKO males induced aversive, analgesic responses, with the odors of the WT inducing significantly greater analgesia. The odors of restraint stressed WT and KO males also elicited analgesia with, again, females displaying significantly greater responses to the odors of stressed OTKO and βERKO males than their WTs, and significantly lower analgesia to the odors of stressed αERKO than αERWT males. These findings show that the KO mice are discriminated from their WTs on the basis of odor and that the various KOs differ in the relative attractiveness/aversiveness of their odors. Therefore, in behavioral assays one causal route by which gene inactivation alters the social behavior of knockout mice may be mediated through the partners' modified responses to their odors. 相似文献
102.
J K Fredrickson D L Balkwill M F Romine T Shi 《Journal of industrial microbiology & biotechnology》1999,23(4-5):273-283
Several new species of the genus Sphingomonas including S. aromaticivorans, S. stygia, and S. subterranea that have the capacity for degrading a broad range of aromatic compounds including toluene, naphthalene, xylenes, p-cresol, fluorene, biphenyl, and dibenzothiophene, were isolated from deeply-buried (>200 m) sediments of the US Atlantic
coastal plain (ACP). In S. aromaticivorans F199, many of the genes involved in the catabolism of these aromatic compounds are encoded on a 184-kb conjugative plasmid;
some of the genes involved in aromatic catabolism are plasmid-encoded in the other strains as well. Members of the genus Sphingomonas were common among aerobic heterotrophic bacteria cultured from ACP sediments and have been detected in deep subsurface environments
elsewhere. The major source of organic carbon for heterotrophic metabolism in ACP deep aquifers is lignite that originated
from plant material buried with the sediments. We speculate that the ability of the subsurface Sphingomonas strains to degrade a wide array of aromatic compounds represents an adaptation for utilization of sedimentary lignite. These
and related subsurface Sphingomonas spp may play an important role in the transformation of sedimentary organic carbon in the aerobic and microaerobic regions
of the deep aquifers of the ACP.
Received 12 May 1999/ Accepted in revised form 25 July 1999 相似文献
103.
Choi DW Do YS Zea CJ McEllistrem MT Lee SW Semrau JD Pohl NL Kisting CJ Scardino LL Hartsel SC Boyd ES Geesey GG Riedel TP Shafe PH Kranski KA Tritsch JR Antholine WE DiSpirito AA 《Journal of inorganic biochemistry》2006,100(12):2150-2161
Methanobactin (mb) is a novel chromopeptide that appears to function as the extracellular component of a copper acquisition system in methanotrophic bacteria. To examine this potential physiological role, and to distinguish it from iron binding siderophores, the spectral (UV–visible absorption, circular dichroism, fluorescence, and X-ray photoelectron) and thermodynamic properties of metal binding by mb were examined. In the absence of Cu(II) or Cu(I), mb will bind Ag(I), Au(III), Co(II), Cd(II), Fe(III), Hg(II), Mn(II), Ni(II), Pb(II), U(VI), or Zn(II), but not Ba(II), Ca(II), La(II), Mg(II), and Sr(II). The results suggest metals such as Ag(I), Au(III), Hg(II), Pb(II) and possibly U(VI) are bound by a mechanism similar to Cu, whereas the coordination of Co(II), Cd(II), Fe(III), Mn(II), Ni(II) and Zn(II) by mb differs from Cu(II). Consistent with its role as a copper-binding compound or chalkophore, the binding constants of all the metals examined were less than those observed with Cu(II) and copper displaced other metals except Ag(I) and Au(III) bound to mb. However, the binding of different metals by mb suggests that methanotrophic activity also may play a role in either the solubilization or immobilization of many metals in situ. 相似文献
104.
我们用细胞培养法对大青叶、板兰根、羚羊角及复方羚羊角等注射液进行了抗病毒活性的实验研究。结果复方制剂优于单方,预防用药方式的效果最好,抑制病毒对数为3.25±0.45,属中等有效;治疗用药方式居中,抑药毒对数为2.38±0.96;同时用药方式接近无效,抑病毒对数为1.50±0.82。 相似文献
105.
A range of heteropentalene and bipyridinium compounds have been tested as catalysts of electron transfer to oxygen from spinach ferredoxin-NADP+ oxidoreductase reduced by NADPH. For a particular class of compound, the rate of oxygen reduction increased with increasing midpoint potential of the compound under conditions in which reduction of the compound was rate-limiting. Compounds with similar midpoint potentials from different structural classes showed marked differences in rate, attributed to specificity in the interaction with ferredoxin-NADP+ oxidoreductase. 相似文献
106.
葱属植物是被子植物中最大的属之一,包括大蒜、洋葱、大葱、韭菜等多种具有独特辛辣风味的蔬菜作物。S-烷(烯)基半胱氨酸亚砜是葱属植物特有的次生代谢产物,是葱属植物各种挥发性含硫化合物的前体物质,由于其赋予葱属植物独特的辛辣风味和药用价值,因此研究葱属植物S-烷(烯)基半胱氨酸亚砜的代谢途径具有重要意义。在葱属植物中已发现7种S-烷(烯)基半胱氨酸亚砜,这些S-烷(烯)基半胱氨酸亚砜主要在叶片中先经谷胱甘肽途径合成,再转运到鳞茎等贮藏器官的细胞质中积累。目前,关于葱属植物S-烷(烯)基半胱氨酸亚砜降解的研究较多,而S-烷(烯)基半胱氨酸亚砜生物合成的研究则较少。S-烷(烯)基半胱氨酸亚砜是植物硫代谢的下游产物,上游涉及含硫化合物的吸收、转运、半胱氨酸和谷胱甘肽的代谢等过程,这些代谢过程的变化可能影响S-烷(烯)基半胱氨酸亚砜生物合成。今后,应加强以下两方面的研究:一方面,继续克隆鉴定S-烷(烯)基半胱氨酸亚砜生物合成途径中的关键酶基因,并研究其功能;另一方面,加强葱属植物硫代谢的研究,为研究S-烷(烯)基半胱氨酸亚砜生物合成的调控奠定基础。该研究结果为深入解析葱属植物S-烷(烯)基半胱氨酸... 相似文献
107.
Erin P. Arbuckle Gregory D. Smith Maribel C. Gomez Joaquin N. Lugo 《Journal of visualized experiments : JoVE》2015,(99)
This video demonstrates a technique to establish the presence of a normally functioning olfactory system in a mouse. The test helps determine whether the mouse can discriminate between non-social odors and social odors, whether the mouse habituates to a repeatedly presented odor, and whether the mouse demonstrates dishabituation when presented with a novel odor. Since many social behavior tests measure the experimental animal’s response to a familiar or novel mouse, false positives can be avoided by establishing that the animals can detect and discriminate between social odors. There are similar considerations in learning tests such as fear conditioning that use odor to create a novel environment or olfactory cues as an associative stimulus. Deficits in the olfactory system would impair the ability to distinguish between contexts and to form an association with an olfactory cue during fear conditioning. In the odor habitation/dishabituation test, the mouse is repeatedly presented with several odors. Each odor is presented three times for two minutes. The investigator records the sniffing time directed towards the odor as the measurement of olfactory responsiveness. A typical mouse shows a decrease in response to the odor over repeated presentations (habituation). The experimenter then presents a novel odor that elicits increased sniffing towards the new odor (dishabituation). After repeated presentation of the novel odor the animal again shows habituation. This protocol involves the presentation of water, two or more non-social odors, and two social odors. In addition to reducing experimental confounds, this test can provide information on the function of the olfactory systems of new knockout, knock-in, and conditional knockout mouse lines. 相似文献
108.
Tumour necrosis factor-α (TNF-α) is a pro-inflammatory cytokine, expressed in many brain pathologies and associated with neuronal loss. We show here that addition of TNF-α to neuronal–glial co-cultures increases microglial proliferation and phagocytosis, and results in neuronal loss that is prevented by eliminating microglia. Blocking microglial phagocytosis by inhibiting phagocytic vitronectin and P2Y6 receptors, or genetically removing opsonin MFG-E8, prevented TNF-α induced loss of live neurons. Thus TNF-α appears to induce neuronal loss via microglial activation and phagocytosis of neurons, causing neuronal death by phagoptosis. 相似文献
109.
Escherichia coli EmrE is a small multidrug resistance protein encompassing four transmembrane (TM) sequences that oligomerizes to confer resistance to antimicrobials. Here we examined the effects on in vivo protein accumulation and ethidium resistance activity of single residue substitutions at conserved and variable positions in EmrE transmembrane segment 2 (TM2). We found that activity was reduced when conserved residues localized to one TM2 surface were replaced. Our findings suggest that conserved TM2 positions tolerate greater residue diversity than conserved sites in other EmrE TM sequences, potentially reflecting a source of substrate polyspecificity. 相似文献
110.
Michael T. Bowen Shantala A. Hari Dass Jessica Booth Anastasia Suraev Ajai Vyas Iain S. McGregor 《Hormones and behavior》2014
An active coping style displayed under stress – which involves proactive investigatory responses toward environmental threats – has been associated with reduced vulnerability to psychiatric illness. However, the neurobiological determinants of coping styles are not well understood. When rats are exposed to a naturalistic stressor (cat fur) in a group, some individuals in the group show robust active investigation of the stimulus while others show a passive response involving retreat, immobility and close aggregation with conspecifics. Here we explored endocrine and epigenetic correlates of these contrasting coping styles. Male Wistar rats (n = 48) were exposed to cat fur in groups of 4 and the passive and active responders were identified and assessed for endocrine and epigenetic differences. Three days after the final cat fur exposure, active responders had substantially lower plasma levels of corticosterone and progesterone than passive responders. Plasma and testicular testosterone levels did not differ between active and passive responders. Active responders had markedly less methylation of the AVP CGCG promoter region located at base 4970 in the posterodorsal region of the medial amygdala but did not differ in the methylation status of the CCGG sequence located at base 2243. This is in agreement with prior research suggesting that AVP and progesterone act in opposition within the medial amygdala to modulate stress-related behaviors. The present study reports striking endocrine and epigenetic differences between active and passive responders, providing insight into potential systems involved in the manifestation of differing coping styles. 相似文献