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2-Bromopyridine derivatives 2a-2c were prepared. Compounds 2b and 2c and ammonia yielded aminopyridines 3b and 3c which were converted to imidazo[1,2-a]pyridine derivatives 4b and 4c . Compound 4b was nitrated giving the analogue 5b of metronidazole 1 .  相似文献   
3.
Amidrazone 1a and the tricarbonyl derivatives 2b-d reacted in boiling ethanol in the presence of 2,5-norbornadiene 5 giving the pyridine derivatives 6b-d respectively (59-72%) and in the presence of 2,3-dihydrofuran 7 yielding the lactones 10b-d (39-44%). The 2,2′-bipyridine derivatives 6e-g were similarly obtained in good yield (81-87%) from the reaction of amidrazone 1b and tricarbonyl derivatives 2b-d in the presence of 2,5-norbornadiene 5.  相似文献   
4.
Compounds 4a-4d, 4f and 10 were prepared and their ring-opening reactions with N-bromosuccinimide (NBS) investigated. Compounds 4a and 4b gave a mixture of products which did not contain any significant quantity of the corresponding aldehydes 5a and 5b whereas compounds 4c, 4d and 4f gave exclusively the aldehydes 5c, 5d and 5f respectively. Compound 10 similarly gave the aldehyde 11 when treated with NBS.  相似文献   
5.
Heating N-4′-methyl-2′-nitrophenyl-1,2,3,4-tetrahydroisoquinoline ( 1 ) in the presence of oxygen gave both products derived from cleavage of the C8a? Cl bond and oxidation at the 1-position. Under similar conditions N-4′-nitrophenyl-1,2,3,4-tetrahydroisoquinoline ( 4 ) gave only the oxidation product.  相似文献   
6.

Background  

The archaeal exosome is formed by a hexameric RNase PH ring and three RNA binding subunits and has been shown to bind and degrade RNA in vitro. Despite extensive studies on the eukaryotic exosome and on the proteins interacting with this complex, little information is yet available on the identification and function of archaeal exosome regulatory factors.  相似文献   
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PM3 Semi-empirical molecular orbital calculations have been performed on terthiophene derivatives which are also heteropentalene mesomeric betaines. The ionization potentials and band-gaps have been determined in order to identify systems which might provide suitable monomers for conducting polythio phene derivatives.  相似文献   
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We hypothesize that the energy strategy of a cell is a key factor for determining how, or if, the immune system interacts with that cell. Cells have a limited number of metabolic states, in part, depending on the type of fuels the cell consumes. Cellular fuels include glucose (carbohydrates), lipids (fats), and proteins. We propose that the cell's ability to switch to, and efficiently use, fat for fuel confers immune privilege. Additionally, because uncoupling proteins are involved in the fat burning process and reportedly in protection from free radicals, we hypothesize that uncoupling proteins play an important role in immune privilege. Thus, changes in metabolism (caused by oxidative stresses, fuel availability, age, hormones, radiation, or drugs) will dictate and initiate changes in immune recognition and in the nature of the immune response. This has profound implications for controlling the symptoms of autoimmune diseases, for preventing graft rejection, and for targeting tumor cells for destruction.  相似文献   
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