Increase in the amount of adenylate cyclase in rat gastrocnemius muscle after denervation
- 1. Osaka Univ. Medical School (Japan)
Description
After section of the sciatic nerve, the basal adenylate cyclase (AC) activity in rat gastrocnemius muscle increased 6-7 times per membrane protein and about 2 times per whole muscle in the following 30 or 40 days. The AC activity in the muscle 30 days after denervation was increased about 4 times by folskolin. Calcitonin gene-related peptide (CGRP) also increased the adenylate cyclase activity in the denervated muscle. The binding of [3H]-forskolin to cells isolated from gastrocnemius muscle was examined to determine the amount of AC molecules. Inhibition of [3H]-forskolin binding by increasing amounts of unlabeled forskolin gave a sigmoid curve with a IC50 value of 3/times/10/sup /minus/7/M. Results showed that the number of [3H]-forskolin binding sites per cell was higher on the denervated side than on the control side, like the basal AC activity. The IC50 values for inhibition by unlabeled forskolin of binding of [3H]-forskolin were similar to muscles on the control and denervated sides. These results suggest that an increase in the AC activity induced by denervation was due to an increase in the numbers of AC molecules in the muscle
Additional details
Publishing Information
- Journal Title
- Life Sciences
- Journal Volume
- 44
- Journal Issue
- 24
- Series
- Life Sci.
- Journal Page Range
- 1887-1895
- ISSN
- 0024-3205
- CODEN
- LIFSA
INIS
- Country of Publication
- United States
- Country of Input or Organization
- United States
- INIS RN
- 20068521
- Subject category
- S60: APPLIED LIFE SCIENCES;
- Descriptors DEI
- BIOCHEMICAL REACTION KINETICS; BIOCHEMISTRY; CYCLASES; ENZYME ACTIVITY; MUSCLES; NERVES; PEPTIDES; PHOSPHOLIPIDS; PROTEINS; RATS; RECEPTORS; TRACER TECHNIQUES; TRITIUM COMPOUNDS
- Descriptors DEC
- ANIMALS; CHEMISTRY; ENZYMES; ESTERS; HYDROGEN COMPOUNDS; ISOTOPE APPLICATIONS; KINETICS; LIPIDS; LYASES; MAMMALS; NERVOUS SYSTEM; ORGANIC COMPOUNDS; ORGANIC PHOSPHORUS COMPOUNDS; REACTION KINETICS; RODENTS; VERTEBRATES