Literature DB >> 3086747

Chloroquine and ammonium chloride prevent terminal glycosylation of immunoglobulins in plasma cells without affecting secretion.

B Thorens, P Vassalli.   

Abstract

The generation of an acidic pH in intracellular organelles is required for several membrane and protein recycling processes. For instance, the internalization of ligands by receptor-mediated endocytosis is followed by the development of an acidic pH inside endosomes; this allows dissociation of the ligand, which is then transported to the lysosomes, from the receptor, which is recycled to the cell surface. There is evidence that part of this recycling process involves the distal region of the Golgi complex, where terminal glycosylation occurs: when the plasma membrane transferrin receptor is desialylated by neuraminidase treatment, it acquires new sialic acid molecules after endocytosis and before cell-surface re-expression. Golgi membranes have been shown to contain a proton pump and the distal Golgi cisternae appear to have an acidic content. Here, we have studied the effects of chloroquine and ammonium chloride, which raise the pH of acidic intracellular compartments, on the processing and secretion of immunoglobulins by plasma cells. Sialic acid transfer to terminal galactose residues, a reaction known to occur in the distal Golgi shortly before secretion, is completely and rapidly inhibited in the presence of these drugs, without significant modification of the secretion rate. This effect is accompanied by a dilatation of the Golgi cisternae and is not rapidly reversible.

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Year:  1986        PMID: 3086747     DOI: 10.1038/321618a0

Source DB:  PubMed          Journal:  Nature        ISSN: 0028-0836            Impact factor:   49.962


  26 in total

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3.  Effects of ammonium ion removal on growth and MAb production of hybridoma cells.

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4.  The Angelman syndrome protein Ube3a/E6AP is required for Golgi acidification and surface protein sialylation.

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7.  On the heterogeneous glycosylation of the membranes of the trans Golgi network in rabbit luteal cells.

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Journal:  Histochemistry       Date:  1987

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9.  Enhanced erythropoietin heterogeneity in a CHO culture is caused by proteolytic degradation and can be eliminated by a high glutamine level.

Authors:  M Yang; M Butler
Journal:  Cytotechnology       Date:  2000-10       Impact factor: 2.058

10.  Evaluation of the growth environment of a hydrostatic force bioreactor for preconditioning of tissue-engineered constructs.

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