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K Wu

Publications and source records attributed to K Wu.

At least 307 records · Page 17Linked to original sources

The role of enzyme lysyl amino groups in the reaction with alpha 2-macroglobulin.

The primary observation, from our laboratory and others, of the effect of blocking the lysyl amino groups of enzymes is the reduction in the fraction of complexes that are resistant to SDS. The blocked enzyme derivatives do cause the specific proteolysis of the alpha 2M subunit to the 85K/100K fragments, and do cause the appearance of new thiol groups. With respect to the sequence of reaction, we may summarize the results by saying that if the reversible DMM-trypsin is, in fact, a model for the native enzyme, proteolysis can precede formation of the presumed covalent bond between bound enzyme and inhibitor. If our preliminary observations are borne out by later experiments, thiol release may precede covalent bond formation or loss of reactivity with amines, suggesting that an intact thiolester need not be the immediate target for amines; another intermediate, possibly the internal pyroglutamate originally proposed by Howard et al. and seen in model studies, may be an additional, or even the primary, target for covalent bonding with native enzymes. With regard to the "trap" hypothesis, the limited release of thiols in a slow phase is suggestive of enzyme activity within the alpha 2M-protease complex, consistent with the theory. Noncovalent irreversible complexes, however, are not a necessary part of associations seen with lysyl-blocked enzymes (which do cause proteolysis and do release thiols); this result is supported by limited data with noncovalently bound native enzymes. Some fraction of irreversible noncovalently bound enzymes may occur, but our results suggest that although alpha 2M-bound enzymes are unusually sterically hindered, the transformation to the presumed covalent state that appears to depend on intact amino groups, may be sufficient to explain the low dissociation of native enzymes. We feel that more experimental evidence is needed to resolve some of the ambiguities on this question but, we feel the existence of a "trapping" reaction has not been proved. In fact, given the possible existence of equilibria between covalent and noncovalent complexes observed, for example, in soybean trypsin inhibitor, and the very low dissociation constants observed with traditional protein-protein complexes, the question of physically encapsulated structures in alpha 2M may not be resolvable without direct evidence from crystal structures.

Binding Sites↗

Inhibition of proteases by alpha 2-macroglobulin. The role of lysyl amino groups of trypsin in covalent complex formation.

The lysyl amino groups of bovine trypsin were covalently modified by acetylation, succinylation, or reductive methylation. The enzymatically active derivatives were still capable of reaction with alpha 2-macroglobulin (alpha 2M), although to a lesser extent than native enzyme. The resulting enzyme-alpha 2M complexes, however, were much more susceptible to dissociation by sodium dodecyl sulfate than complexes formed with unmodified trypsin. The bound modified enzymes could be released from the alpha 2M complex with an excess of native thrombin. In addition, anhydrotrypsin displaced methyl trypsin from its complex and the anhydro derivative was bound in its place. The data provide evidence for two types of noncovalent intermediates; those formed from lysyl-modified enzymes show proteolysis of the alpha 2M to the nominal 85,000 fragment, whereas anhydrotrypsin forms a complex with apparently intact alpha 2M chains. A model is proposed for the reaction of alpha 2M with proteases in which one or both of these noncovalent intermediates is formed. Conversion of this form(s) to a stable covalent complex requires unmodified lysyl amino groups on the enzyme, suggesting that these groups may form a covalent bond with the inhibitor, possibly at the site at which methylamine binds.

Binding Sites↗

Granulomatous hepatitis, increased platelet aggregation, and hypercholesterolemia.

Two young patients presented with an unusual liver disease, granulomatous hepatitis with postnecrotic cirrhosis, and both underwent a splenorenal shunt procedure. Each developed an arterial embolic episode probably related to increased platelet aggregation. This represents the first report of a liver disease associated with increased platelet aggregation that was clinically significant, a myocardial infarction in one and a posterior cerebral infarction in the other. Also, unexpectedly, both patients became hypercholesterolemic after the splenorenal shunt was established.

Adolescent↗

Amino acid sequence of the alpha chain of chicken AI hemoglobin.

Adult chicken hemoglobin is heterogeneous and contains two major components, AI and AII (1). The amino acid sequence of the alpha chain of the AI component from white leghorns (small A type) was determined and compared with that of the alpha chain of the AII component, previously determined by the authors (2). An unexpectedly large difference of 65 amino acids was found between these two chains.

Amino Acid Sequence↗

Location and severity of UVB irradiation damage in the rat lens.

We investigated the location and severity of lens opacities and epithelial alterations following ultraviolet-B (UVB) irradiation in vivo, using Brown Norway rats. A group of 9 rats received 65 mJ/cm2 UVB irradiation from overhead lamps every 6 days. Lens changes were documented and evaluated by an anterior eye segment analysis system. Lens epithelial cells were examined postmortem in flat preparations. After 8 weeks of the irradiation schedule (total dose: 0.6 J/cm2), an anterior polar opacity was apparent; at 16 weeks, the opacities had progressed more deeply into the cortex. At postmortem examination, cells in the central region displayed disorganization, clumping, some pyknotic nuclei and mitosis. There were deeper opacities and cell damage was more severe above the central horizontal plane than below it. This present study demonstrated that UVB damage differed in the superior and inferior parts divided by a horizontal plane through the lens anterior pole, when the UVB source was above and there was no reflection from below or laterally. The lens epithelial cells, and associated lens fibers, are the first target of UVB irradiation.

Animals↗

Temperature and growth rate effects on the hok/sok killer locus for enhanced plasmid stability.

The hok/sok locus, isolated from the multiple-resistance plasmid R1 of Escherichia coli, is very efficient at ensuring the stable maintenance of plasmids in Gram-negative systems by killing plasmid-free cells as they arise. To investigate independently the influence of temperature and growth rate on the effectiveness of hok/sok, continuous fermentations have been conducted with the pUC-based, IPTG-induced, beta-galactosidase expression vector pTKW106. At fixed temperature (37 degrees C), decreasing the dilution rate decreased plasmid stability, and at a fixed, low dilution rate (D = 0.15/h), decreasing the temperature resulted in an increase in plasmid stability. These trends are explained by the specific beta-galactosidase activity of each continuous fermentation: higher, specific, recombinant protein expression led to decreased plasmid stability (due to either segregational or structural instability, as determined by plasmid DNA isolation). A representative fed-batch medium produced more beta-galactosidase on a volumetric basis than M9C in the chemostat, and addition of the hok/sok locus increased segregational stability by 8-22-fold in continuous fermentations that lacked antibiotic selection pressure and in which beta-galactosidase was constantly expressed a 12% of total cell protein for 60 h (43-47 generations).

Cloning, Molecular↗