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K M Hannon

Publications and source records attributed to K M Hannon.

7 recordsLinked to original sources

Extracellular signal-regulated kinase pathway is differentially involved in beta-agonist-induced hypertrophy in slow and fast muscles.

The molecular mechanisms controlling beta-adrenergic receptor agonist (BA)-induced skeletal muscle hypertrophy are not well known. We presently report that BA exerts a distinct muscle- and muscle fiber type-specific hypertrophy. Moreover, we have shown that pharmacologically or genetically attenuating extracellular signal-regulated kinase (ERK) signaling in muscle fibers resulted in decreases (P < 0.05) in fast but not slow fiber type-specific reporter gene expressions in response to BA exposure in vitro and in vivo. Consistent with these data, forced expression of MAPK phosphatase 1, a nuclear protein that dephosphorylates ERK1/2, in fast-twitch skeletal muscle ablated (P < 0.05) the hypertrophic effects of BA feeding (clenbuterol, 20 parts per million in water) in vivo. Further analysis has shown that BA-induced phosphorylation and activation of ERK occurred to a greater (P < 0.05) extent in fast myofibers than in slow myofibers. Analysis of the basal level of ERK activity in slow and fast muscles revealed that ERK1/2 is activated to a greater extent in fast- than in slow-twitch muscles. These data indicate that ERK signaling is differentially involved in BA-induced hypertrophy in slow and fast skeletal muscles, suggesting that the increased abundance of phospho-ERK1/2 and ERK activity found in fast-twitch myofibers, compared with their slow-twitch counterparts, may account, at least in part, for the fiber type-specific hypertrophy induced by BA stimulation. These data suggest that fast myofibers are pivotal in the adaptation of muscle to environmental cues and that the mechanism underlying this change is partially mediated by the MAPK signaling cascade.

Adrenergic beta-Agonists↗

Harrington instrumentation in fractures and dislocations of the thoracic and lumbar spine.

Harrington instrumentation was used to treat 23 injuries of the thoracic and lumbar spine accompanied by neural damage encountered during an 8 1/2-year period. The indication for the use of Harrington instrumentation is instability of the thoracic or lumbar spine due to trauma, laminectomy, or both. Of the 13 patients with incomplete neural lesions in the series, 12 improved. One of these was a cauda equina lesion. No patient in the series was neurologically worse after operation, in contrast to other reported series in which laminectomy alone was done. It is concluded that Harrington instrumentation is the strongest available system of internal fixation, and the only one that permits reduction of nearly all traumatic spinal deformities at the time of operation.

Adolescent↗