Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0043167 (pertussis)
19,595 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

This study compared the effects of endothelin-1 (ET-1), ET-2 and ET-3 on the guinea pig field-stimulated ileum. All ETs (0.3-30 nM) caused graded inhibitions of nerve-mediated responses followed by sustained contractions. The rank order of potencies for the twitch depressor effect (IC50S) was ET-3 = ET-1 greater than ET-2, with ET-3 causing greater maximal inhibition than ET-1 or ET-2. The rank order of potencies for contraction (EC50S) was ET-1 = ET-2 greater than ET-3, with ET-1 causing greater maximal contraction than ET-2 or ET-3. Twitch inhibition by ET-1 (3 nM) was unaffected by indomethacin (5.6 microM), cromakalim (10 microM), glibenclamide (3 microM) or nicardipine (0.1 microM). ET-1-induced contraction was unaltered by tetrodotoxin (0.3 microM), atropine (0.3 microM) or glibenclamide, but was reduced by indomethacin. Cromakalim and nicardipine virtually abolished ET-1-induced contraction. ET-1 (up to 30 nM) did not potentiate submaximal contractions induced by acetylcholine, histamine, bradykinin or substance P. ET-3 relaxed ileal segments precontracted with either acetylcholine (0.3 microM) or histamine (1 microM). Pretreatment of guinea pigs with pertussis toxin (50 micrograms/kg i.p., 6 days beforehand) did not influence either effects of ET-1 on the field-stimulated ileum. Our data suggest that the dual effects of ETs on the guinea pig isolated ileum are mediated by distinct receptors and possibly involve different mechanisms of action. The transient inhibition of responses to field stimulation seems unrelated to activation of ATP-sensitive potassium channels and is rather insensitive to L-type Ca++ channel blockade.
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PMID:Dual effects of endothelins -1, -2 and -3 on guinea pig field-stimulated ileum: possible mediation by two receptors coupled to pertussis toxin-insensitive mechanisms. 137 59

Opioid tolerance and dependence are characterized in terms of inhibitory and excitatory neuronal mechanisms. Bacterial toxins were used to investigate these phenomena in the isolated guinea-pig ileum (GPI) and mouse vas deferens (MVD). Cholera toxin (CT) and pertussis toxin (islet activating protein; IAP) have been demonstrated to selectively impair the function of either the stimulatory or inhibitory nucleotide regulatory protein, mediating the signal transmission to the adenylate cyclase. It has been found that CT failed to affect electrically evoked twitch tension in naive and tolerant GPI and MVD. Twitch tension evoked by excitatory drugs, e.g. neurotensin, was attenuated in the GPI, but not in the MVD. CT did not interfere with the actions of opioids or nonopioids in either the GPI or the MVD. Similarly, IAP failed to affect electrically evoked twitch tension. It virtually lacked an effect on the inhibitory action of opioids and nonopioids on electrically stimulated naive and tolerant GPI and MVD. On the other hand, both CT and IAP dose-dependently attenuated the naloxone precipitated withdrawal contracture in the GPI rendered opioid-dependent. These findings may suggest that opioid receptors at nerve terminals of the GPI and the MVD are not linked to adenylate cyclase, and those receptors relate to the state of tolerance. In contrast, opioid receptors located at nerve somata may be linked to adenylate cyclase. Those receptors may be associated with the development of dependence. The experiments with CT suggest a synaptic excitatory input of neighboring nerve elements necessary for the generation of a withdrawal contracture.
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PMID:Effect of cholera toxin and pertussis toxin on opioid tolerance and dependence in the guinea-pig myenteric plexus. 301 78

Pertussis, also known as whooping cough, is a highly contagious disease, which is most dangerous to infants less than one year old. About half of the babies reported nationally to the Centers for Disease Control and Prevention (CDC) as having the disease are hospitalized. As many as 16/100 babies reported with pertussis get pneumonia, and about 2/100 have convulsions. For those babies reported to have pertussis, about 1/500 has brain problems, some of which can become permanent, and about 1/250 will die because of complications from the disease. Serious illness is less likely in older children and adults. Pertussis vaccine is generally administered in combination with diphtheria and tetanus vaccines, known as DTP vaccine. A primary series of DTP keeps 70-90/100 children from getting pertussis, usually through the elementary school years at least. About half of the children who receive DTP vaccine will not experience any discomfort at all. Some will have minor problems such as soreness, swelling and redness where the shot was given; fever; fussiness; drowsiness; and loss of appetite lasting 1-2 days. Once per 100 to 1000 shots, moderate problems can occur: crying non-stop for 3 hours or more, fever of 105 degrees (F) or higher. For 1 shot in 1750, a child may experience a seizure (convulsions, fits, spasms, twitching, jerking, or staring spells) usually caused by fever, or collapse or fainting (becoming blue, pale, limp, and non-responsive). Very rarely, DTP causes long seizures, decreased consciousness, or coma that usually does not last. Permanent brain damage can very infrequently follow such acute brain problems. There are no tests that can tell in advance if a child will be adversely affected by the DTP vaccine. Definitely the benefits from the DTP vaccine far outweigh the risks for almost all children.
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PMID:Facts about pertussis and DTP vaccine. 1234 38

Legionella pneumophila, which is a causative pathogen of Legionnaires' disease, expresses its virulent traits in response to growth conditions. In particular, it is known to become virulent at a post-exponential phase in vitro culture. In this study, we performed a proteomic analysis of differences in expression between the exponential phase and post-exponential phase to identify candidates associated with L. pneumophila virulence using 2-Dimentional Fluorescence Difference Gel Electrophoresis (2D-DIGE) combined with Matrix-Assisted Laser Desorption/Ionization-Mass Spectrometry (MALDI-TOF-MS). Of 68 identified proteins that significantly differed in expression between the two growth phases, 64 were up-regulated at a post-exponential phase. The up-regulated proteins included enzymes related to glycolysis, ketone body biogenesis and poly-3-hydroxybutyrate (PHB) biogenesis, suggesting that L. pneumophila may utilize sugars and lipids as energy sources, when amino acids become scarce. Proteins related to motility (flagella components and twitching motility-associated proteins) were also up-regulated, predicting that they enhance infectivity of the bacteria in host cells under certain conditions. Furthermore, 9 up-regulated proteins of unknown function were found. Two of them were identified as novel bacterial factors associated with hemolysis of sheep red blood cells (SRBCs). Another 2 were found to be translocated into macrophages via the Icm/Dot type IV secretion apparatus as effector candidates in a reporter assay with Bordetella pertussis adenylate cyclase. The study will be helpful for virulent analysis of L. pneumophila from the viewpoint of physiological or metabolic modulation dependent on growth phase.
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PMID:Proteomic analysis of growth phase-dependent expression of Legionella pneumophila proteins which involves regulation of bacterial virulence traits. 2066 49