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R L Dean

Publications and source records attributed to R L Dean.

7 recordsLinked to original sources

Synthesis and biological activity of N6-(p-sulfophenyl)alkyl and N6-sulfoalkyl derivatives of adenosine: water-soluble and peripherally selective adenosine agonists.

A series of N6-(p-sulfophenyl)alkyl and N6-sulfoalkyl derivatives of adenosine was synthesized, revealing that N6-(p-sulfophenyl)adenosine (10b) is a moderately potent (Ki vs [3H]PIA in rat cortical membranes was 74nM) and A1-selective (120-fold) adenosine agonist, of exceptional aqueous solubility of > 1.5 g/mL (approximately 3 M). Compound 10b was very potent in inhibiting synaptic potentials in gerbil hippocampal slices with an IC50 of 63 nM. At a dose of 0.1 mg/kg ip in rats, 10b inhibited lipolysis (a peripheral A1 effect) by 85% after 1 h. This in vivo effect was reversed using the peripherally selective A1-antagonist 1,3-dipropyl-8-[p-(carboxyethynyl)phenyl]xanthine (BW1433). The same dose of 10b in NIH Swiss mice (ip) was nearly inactive in locomotor depression, an effect that has been shown to be centrally mediated when elicited by lower doses of other potent adenosine agonists, such as N6-cyclohexyladenosine (CHA) (Nikodijevic et al. FEBS Lett. 1990, 261, 67). HPLC studies of biodistribution of a closely related and less potent homologue, N6-[4-(p-sulfophenyl)butyl]adenosine indicated that a 25 mg/kg ip dose in mice resulted in a plasma concentration after 30 min of 0.46 micrograms/mL and no detectable drug in the brain (detection limit < 0.1% of plasma level). Although 10b at doses > 0.1 mg/kg in mice depressed locomotor activity, this depression was unlike the effects of CHA and was reversible by BW1433. These data suggest that 10b is a potent adenosine agonist in vivo and shows poor CNS penetration.

Adenosine

Ferritin is a translationally regulated heat shock protein of avian reticulocytes.

Heat-shock avian reticulocytes exhibit enhanced synthesis of a greater than 450-kDa protein. Biochemical, immunochemical, and visual criteria were used to identify this protein as the iron storage protein ferritin. The 21-kDa ferritin subunits synthesized during heat shock are similar in size and pI to the subunits that are constitutively synthesized. The 2-6-fold heat shock-induced increase in ferritin synthesis appears to be regulated at the translational level as it is insensitive to actinomycin D. Northern and dot-blot hybridization analyses of cytoplasmic RNAs with avian H-ferritin cDNA fragments support the contention that the heat shock stimulation of ferritin synthesis is translationally regulated. These latter studies demonstrate that the heat shock-induced synthesis of ferritin does not involve a change in the amount of total cytoplasmic ferritin mRNAs, but rather appears to entail a translocation of cytoplasmic H-ferritin mRNAs from a polyribosome-free, translationally repressed state to a polyribosome-associated, translationally active state. These results suggest that thermally stressed avian reticulocytes have a critical and functional need for the synthesis of additional ferritin and that its enhanced synthesis, unlike the new and/or enhanced synthesis of the well-established avian heat shock proteins, is regulated wholly at the translational level.

Animals

Rapid purification of ferritin from lysates of red blood cells using proteinase-K.

A simple, rapid, and novel procedure for purifying ferritin from the postnuclear supernatant of red blood cell lysates is described. This report establishes the resistance of commercially available holo- and apo-ferritins to proteinase-K digestion, and documents how the use of this enzyme, in conjunction with the well-documented resistance of ferritins to heat denaturation (75-80 degrees C for 10 min), makes it possible to obtain high yields (greater than 90%) of pure, undegraded ferritin from the postnuclear supernatant of hypotonically or Triton X-100 lysed red blood cells. The resultant purified ferritin contains the same amount of iron as ferritin not treated with proteinase-K and, as judged by one- and two-dimensional gel electrophoresis and electron microscopy, consists of intact ferritin with a subunit isoform composition identical in molecular mass and isoelectric points to that obtained from ferritin prepared in the absence of this enzyme.

Animals

Recent memory in aged non-human primates: hypersensitivity to visual interference during retention.

The effect of irrelevant visual information presented during retention of recent memory was investigated in young and aged monkeys. The monkeys were required to remember the location of a visual stimulus over short durations, during which time, on certain trials, irrelevant visual stimulation was presented. It was found that although the young monkeys performed as well with or without the irrelevant stimulation, the aged monkeys were significantly impaired when irrelevant stimulation was presented. Thus, these data provide direct support for the notions that aged subjects suffer a decreased ability to suppress visual stimuli from interfering with accurate behavior, and that this disability contributes to the memory impairments reported with old age. When considered with previous research in humans and non-human primates, these results suggest that this disability to suppress sensory interference may reflect a general effect of aging which may contribute to many other age-related behavioral impairments. Finally, it was suggested that the striking similarities of the behavioral profile now established for the aged monkey to that of younger monkeys suffering destruction of the frontal cortex (and anatomically related subcortical sites) offers the heuristic possibility that these two syndromes share a common neurological etiology.

Aging

Aging in the rhesus monkey: effects on visual discrimination learning and reversal learning.

The behavior of aged rhesus monkeys (18 years and older) was compared to that of young monkeys (3 to 6 years old) to evaluate their relative abilities to learn a series of visual discrimination and discrimination reversal problems. Using a subject-paced, automated experimental procedure designed to optimize stimulus control and facilitate execution of choice responses, no consistent age-related differences were observed in the ability to learn new color and pattern discrimination problems of varying difficulty. However, a severe and consistent deficity on reversal learning did occur. A detailed analysis of this deficit revealed that not only did the aged monkeys take longer to extinguish the old habit and return to chance performance, but they continued to display a deficit in establishing accurate performance at above-chance levels as well. Since no reliable age differences were observed on the original discrimination learning problems, these data suggest that aging impairs mechanisms involved with response rigidity and/or susceptibility to intertrial proactive interference, more severely than those involved with the simple formation of new associations.

Aging