1981Annals of the New York Academy of SciencesRequires access

FORMATION OF α‐1,2‐ AND α‐1,3‐LINKED MANNOSE DISACCHARIDES FROM MANNOSYL RETINYL PHOSPHATE BY RAT LIVER MEMBRANE ENZYMES*,†

Helen Quill, George Wolf

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Abstract

Mannosyl retinyl phosphate (MRP) was an active substrate for the transfer of mannose to methyl-alpha-D-mannose (CH3-alpha-man), p-nitrophenyl-alpha-D-mannose, and free mannose. The products formed during MRP incubation with CH3-alpha-man or with mannose were alpha-linked. The disaccharides formed by incubation of MRP with mannose were identified by paper chromatography and electrophoresis as mannose-alpha-1,2-mannose and mannose-alpha-1,3-mannose. Triton X-100 greatly inhibited mannose-alpha-1,3-mannose synthesis. In the absence of detergent, MnCl2, NiCl2, and ZnCl2 inhibited synthesis of both products. Formation of mannose-alpha-1,3-mannose was more sensitive to preincubation of the enzyme at 40 degrees C then was synthesis of mannose-alpha-1,2-mannose. No differences in membrane mannosyltransferase activity with MRP, compared to DMP, could be demonstrated.

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Mannosyl retinyl phosphate (MRP) was an active substrate for the transfer of mannose to methyl-alpha-D-mannose (CH3-alpha-man), p-nitrophenyl-alpha-D-mannose, and free mannose. The products formed during MRP incubation with CH3-alpha-man or with mannose were alpha-linked. The disaccharides formed by incubation of MRP with mannose were identified by paper chromatography and electrophoresis as mannose-alpha-1,2-mannose and mannose-alpha-1,3-mannose. Triton X-100 greatly inhibited mannose-alpha-1,3-mannose synthesis. In the absence of detergent, MnCl2, NiCl2, and ZnCl2 inhibited synthesis of both products. Formation of mannose-alpha-1,3-mannose was more sensitive to preincubation of the enzyme at 40 degrees C then was synthesis of mannose-alpha-1,2-mannose. No differences in membrane mannosyltransferase activity with MRP, compared to DMP, could be demonstrated.

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Available abstract

Mannosyl retinyl phosphate (MRP) was an active substrate for the transfer of mannose to methyl-alpha-D-mannose (CH3-alpha-man), p-nitrophenyl-alpha-D-mannose, and free mannose. The products formed during MRP incubation with CH3-alpha-man or with mannose were alpha-linked. The disaccharides formed by incubation of MRP with mannose were identified by paper chromatography and electrophoresis as mannose-alpha-1,2-mannose and mannose-alpha-1,3-mannose. Triton X-100 greatly inhibited mannose-alpha-1,3-mannose synthesis. In the absence of detergent, MnCl2, NiCl2, and ZnCl2 inhibited synthesis of both products. Formation of mannose-alpha-1,3-mannose was more sensitive to preincubation of the enzyme at 40 degrees C then was synthesis of mannose-alpha-1,2-mannose. No differences in membrane mannosyltransferase activity with MRP, compared to DMP, could be demonstrated.

Key concepts: Mannose, Mannose 6-phosphate, Mannose receptor, Biochemistry, Chemistry, Mannose 6-phosphate receptor, Enzyme, Receptor

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FORMATION OF α‐1,2‐ AND α‐1,3‐LINKED MANNOSE DISACCHARIDES FROM MANNOSYL RETINYL PHOSPHATE BY RAT LIVER MEMBRANE ENZYMES*,† — Research Paper | ScholarLens