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M K Lam-Po-Tang

Publications and source records attributed to M K Lam-Po-Tang.

3 recordsLinked to original sources

Adherence to human colonocytes of an Escherichia coli strain isolated from severe infantile enteritis: molecular and ultrastructural studies of a fibrillar adhesin.

Escherichia coli 469-3 (O21:H-) was isolated from a child with severe enteritis. Ultrastructural analysis of the surface of the strain indicated the presence of very fine fimbriae which mediated mannose-resistant hemagglutination of human blood and caused the bacteria to adhere to human epithelial cell lines and to brush borders of isolated human colonic, but not duodenal, enterocytes. A cosmid library of total DNA of the strain, expressed in laboratory strains of E. coli, was screened by a rapid hemadsorption method, and a number of positive clones were identified. Restriction endonuclease fragments specifying mannose-resistant adherence were subcloned from the cosmid DNA of a strongly hemagglutinating clone in a plasmid vector. The identity of the adhesin was confirmed by biochemical, electron-microscopic, and immunological comparisons with the adhesin synthesized by the clinical isolate. It comprised a high-molecular-weight aggregate of a 14,000-dalton subunit protein which bound antiserum raised against the mannose-resistant adhesin of strain 469-3. The adhesin was synthesized by both the clone and the parental strain at growth temperatures above 18 degrees C but by only a fraction of the cells in a pure culture, although all the bacteria which adhered to human cells expressed the protein.

Adhesins, Escherichia coli↗

The use of optical sensors to understand cellular interactions with renal cells.

Optical biosensor technology has revolutionized the assessment of receptor binding, enabling the characterization of low affinity interactions in real time. We report the application of the LAsys Optical Biosensor to the investigation of the affinity and specificity of the putative proximal tubular scavenging receptor for protein reabsorption and the specificity of AGE-modified protein interactions with primary human mesangial cells. Using the LLCPK cell line, the carboxy-methyl dextran cuvette surface and five different proteins (ranging in size and charge), we have shown that there is evidence to support the existence of a single scavenging receptor for all the proteins tested. The proteins competed with each other differing only in their relative binding affinity for the common receptor. We have also shown that human mesangial cells can bind to AGE-modified human serum albumin (AGE-HSA) immobilized onto the carboxylate surfaced planar cuvette and that binding can be inhibited using increasing concentrations of soluble AGE-HSA. However, increasing concentrations of soluble Non-AGE modified HSA can also inhibit binding to a similar extent which implies that there is relatively little AGE-receptor (RAGE) expression on cultured primary human mesangial cells. These results demonstrate the exciting potential of this technology as a tool to explore cellular interactions with renal cells.

Animals↗