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R Lecocq

Publications and source records attributed to R Lecocq.

40 records · Page 3Linked to original sources

Control by TSH of protein turnover in thyroid subcellular fractions.

The action of TSH on protein turnover in various subcellular fractions has been investigated in dog thyroid slices incubated in vitro. The results suggest a general inhibition by TSH of protein catabolism. Using double labeline (3/ and 14C) of the proteins, an increase of the disappearance of some labeled material from the microsomal fraction in the presence of TSH has been observed. The protein nature of this material has been established by testing its susceptibility to hydrolysis by trypsin. The fact that the microsomal pellet had to be treated by triton X 100 before hydrolysis by trypsin could occur, suggests that the material is probably enclosed in, or protected by membrane vesicles. Its high molecular weight and its ability to be immunoprecipitated by an antithyroglobulin serum suggest that the microsomal protein, the disappearance of which is stimulated by TSH, is thyroglobulin or one of its subunits. It is suggested that our results reflect the acceleration by TSH of the vectorial transfer of thyroglobulin through the membranes of the endoplasmic reticulum to the colloid space.

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Thyroglobulin messenger RNA: translation of a 33-S mRNA into a peptide immunologically related to thyroglobulin.

Poly(UC)--Sepharose chromatography of the RNA extracted from a thyroid fraction sedimenting between 800 X g and 27000 X g allows the purification of two RNA fractions amounting each to 1% of the applied material. The first one is loosely bound to the column from which it is eluted at 25 degrees C. It is mainly composed of 16-S and 12-S RNA comprising no poly(A) sequences. This could correspond to mitochondrial rRNA. The second one, which is eluted at 50 degrees C, is poly(A)-rich and represents 33-S and 17--18-S RNA species. The 33-S RNA resists heating at 80 degrees C, suggesting that it is composed of one polynucleotide chain. When injected into Xenopus oocytes, the 33-S RNA specifically promotes the synthesis of a peptide with an apparent molecular weight of 185000 and an apparent sedimentation coefficient of 10-S. This peptide is immunologically related to thyroglobulin and could represent its main precursor. Under the conditions tested it does not polymerize spontaneously into 19-S thyroglobulin, suggesting that assembly of the molecule could require specific, post-translational alterations of the precursor and/or the presence of additional lighter subunits.

Animals↗