PubMed Health⌕ Search

Biomedical subjects

K Sandhoff

Publications and source records attributed to K Sandhoff.

At least 253 records · Page 14Linked to original sources

AB variant of infantile GM2 gangliosidosis: deficiency of a factor necessary for stimulation of hexosaminidase A-catalyzed degradation of ganglioside GM2 and glycolipid GA2.

Human kidney extracts heated to 60 degrees and devoid of hexosaminidase activity (2-acetamido-2-deoxy-beta-D-glucoside acetamidodeoxyglucohydrolase EC 3.2.1.30) stimulate more than 20-fold the hexosaminidase A-catalyzed degradation of ganglioside GM2 and of glycolipid GA2, the neuronal storage compounds of GM2 gangliosidosis. The stimulating factor of this extract, which is labile at temperatures above 60 degrees, is also present in kidney extracts from patients with infantile GM2 gangliosidosis having a deficiency of hexosaminidase A (Tay-Sachs disease, variant B) and a deficiency of hexosaminidases A and B (variant 0). Evidence is presented that this factor is defective in the AB-variant of infantile GM2 gangliosidosis which is characterized by an accumulation of glycolipids GM2 and GA2 despite the fact that the degrading enzymes, hexosaminidases A and B, retain normal activity levels. Thus, variant AB is an example of a fatal lipid storage disease that is caused not by a defect of a degrading enzyme but rather by a defective factor necessary for the interaction of lipid substrates and the water-soluble hydrolase.

Enzyme Activation↗

Purification, biochemical and immunological characterisation of hexosaminidase A from variant AB of infantile GM2 gangliosidosis.

Variant AB of infantile GM2 gangliosidosis is a fatal disease leading invariably to death within the first few years of life, due to the excessive storage of the glycolipids GM2 and GA2 which occurs in the nervous tissue of the patient. Unlike other variants of this hereditary disease, where a deficiency of hexosaminidase A, the ganglioside-GM2-degrading enzyme, could be demonstrated, the variant AB is characterized by a normal or even elevated level of this enzyme. To examine the possibility of a mutant hexosaminidase A, well capable of hydrolyzing the fluorogenic synthetic substrates but unable to attack the ganglioside, the enzyme was isolated from a patients tissue and characterized biochemically and immunologically in comparison with an enzyme preparation from normal control tissue. No differences between hexosaminidase A from normal and variant AB tissue could be detected indicating that the defect involved in this disease is not at the genetic level of production of either alpha or beta chains of hexosaminidase A.

Child, Preschool↗

Isoelectric focusing pattern of acid hydrolases in cultured fibroblasts, leucocytes and cell-free amniotic fluid.

The activities of 9 acid hydrolases were determined in cell-free amniotic fluid, leucocytes and cultured fibroblasts using fluorogenic substrates. The specific activities of beta-glucosidase, alpha-fucosidase, beta-hexosaminidase, and arylsulphatase A and B were found to be in the same range in cell-free amniotic fluid and in leucocyties. The isoenzyme pattern of these 5 hydrolases as well as that of acid phosphatase and alpha-mannosidase showed some similarities in all three specimens studied; the pattern of alpha- and beta-galactosidase obtained by isoelectric focusing was different in the 2 types of cells studied and in the cell-free amniotic fluid.

Acid Phosphatase↗

Immunochemical and biochemical investigation of hexosaminidase S.

Hexosaminidase S (HEX S), the residual isozyme found in tissues and body fluids of children with the O variant of GM2 gangliosidosis, was purified from tissues of variant individuals and biochemically and immunochemically characterized. This enzyme has an apparent molecular weight of 103,000 with an isoelectric point of 4.2, is heat labile to the same extent as HEX A, and loses most of its activity following heating for 30 min at 50 degrees C. HEX S reacts immunologically with the antisera against either HEX A or B, but the reaction is considerably stronger with the anti-A serum or with antibody preparations which react exclusively with the A isozyme. Results obtained by a radioimmunoassay using the various antisera indicated that there is no antigenically cross reacting material which lacks enzymatic activity in the variant tissues. These findings are in accord with a suggested molecular structure of two subunits, each composed of two alpha chains (alpha2 alpha2) for HEX S; it also implies that alpha and beta chains have some structural similarity which is manifested in antigenic cross-reactivity.

Antibodies↗

[Sphingolipid storage disease as an example of a molecular neuropathology (author's transl)].

A short survey on the sphingolipid storage diseases is presented. The chemical nature of the accumulated substances is related to the genetically induced enzymic blocks on their biodegradation. Two disorders are stressed with alter the nervous system: metachromatic leukodystrophy and familiar infantile amaurotic idiocy (GM2-gangliosidosis). The difficulties in the causal interpretation of three variants of the latter disease due to the involvement of isoenzymes are dealt with. The relationship between the enzyme defect in these disorders and their time of clinical onset is discussed. Finally, the diagnostic possibilities are presented which are a prerequisite for preventing a further dissemination of these therapy-resistent inborn errors of metabolism.

Child, Preschool↗

Sphingolipidoses.

Explore the source record for details and available documents.

Cerebroside-Sulfatase↗