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      Nephrotoxicity of Bence-Jones proteins: interference in renal epithelial cell acidification

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          Abstract

          The aim of the present study was to evaluate the acidification of the endosome-lysosome system of renal epithelial cells after endocytosis of two human immunoglobulin lambda light chains (Bence-Jones proteins, BJP) obtained from patients with multiple myeloma. Renal epithelial cell handling of two BJP (neutral and acidic BJP) was evaluated by rhodamine fluorescence. Renal cells (MDCK) were maintained in culture and, when confluent, were incubated with rhodamine-labeled BJP for different periods of time. Photos were obtained with a fluorescence microscope (Axiolab-Zeiss). Labeling density was determined on slides with a densitometer (Shimadzu Dual-Wavelength Flying-Spot Scanner CS9000). Endocytosis of neutral and acidic BJP was correlated with acidic intracellular compartment distribution using acridine orange labeling. We compared the pattern of distribution after incubation of native neutral and acidic BJP and after complete deglycosylation of BJP by periodate oxidation. The subsequent alteration of pI converted neutral BJP to acidic BJP. There was a significant accumulation of neutral BJP in endocytic structures, reduced lysosomal acidification, and a diffuse pattern of acidification. This pattern was reversed after total deglycosylation and subsequent alteration of the pI to an acidic BJP. We conclude that the physicochemical characteristics of BJP interfere with intracellular acidification, possibly explaining the strong nephrotoxicity of neutral BJP. Lysosomal acidification is fundamental for adequate protein processing and catabolism.

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          Most cited references13

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          Collection of insulin, EGF and alpha2-macroglobulin in the same patches on the surface of cultured fibroblasts and common internalization.

          We have used video intensification microscopy to observe fluorescent derivatives of insulin, epidermal growth factor and alpha2-macroglobulin added to Swiss 3T3-4 cells. At 4 degrees C, each of these polypeptides binds diffusely to specific receptors on the cell surface. When the cells are warmed to 23 or 37 degrees C, the bound insulin epidermal growth factor or alpha2-macroglobulin rapidly forms patches on the cell surface and is internalized. Using fluorescein-labeled alpha2-macroglobulin and rhodamine-labeled derivatives of insulin and epidermal growth factor, we show that all three polypeptides are internalized within the same vesicles by a common pathway. The mechanism for the internalization of these molecules is discussed.
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            Myelomatosis Associated with Glycosuria and Aminoaciduria

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              Distal renal tubular acidosis in multiple myeloma.

              A patient with early multiple myeloma was initially seen with a severe hyperchloremic metabolic acidosis with a normal anion gap and a urine pH of 6.3. The patient did not have glucosuria, aminoaciduria, of phosphaturia. A bicarbonate loading test showed that the fractional excretion of bicarbonate was less than 5% and confirmed the hypothesis that the patient had a distal renal tubular acidification defect. The pathophysiologic mechanism that caused this defect is unknown, but it is associated with the presence of a serum M component (IgG-lambda) and a urine M component (lambda light chains). Multiple myeloma should be considered in the differential diagnosis of conditions of patients who have a renal tubular acidification defect.
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                Author and article information

                Journal
                bjmbr
                Brazilian Journal of Medical and Biological Research
                Braz J Med Biol Res
                Associação Brasileira de Divulgação Científica (Ribeirão Preto, SP, Brazil )
                0100-879X
                1414-431X
                March 2002
                : 35
                : 3
                : 357-360
                Affiliations
                [01] Curitiba PR orgnameUniversidade Federal do Paraná orgdiv1Departamento de Biologia Celular Brasil
                [02] São Paulo SP orgnameUniversidade de São Paulo orgdiv1Faculdade de Medicina orgdiv2Hospital das Clínicas Brasil
                Article
                S0100-879X2002000300011 S0100-879X(02)03500311
                10.1590/S0100-879X2002000300011
                165302e8-9054-4f06-9148-e6a2f08eb246

                This work is licensed under a Creative Commons Attribution 4.0 International License.

                History
                : 15 January 2002
                : 08 June 2001
                Page count
                Figures: 0, Tables: 0, Equations: 0, References: 13, Pages: 4
                Product

                SciELO Brazil

                Categories
                Experimental biology

                Bence-Jones proteins,Lambda light chain protein,Endocytosis,Renal cell acidification

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