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B Holmquist

Publications and source records attributed to B Holmquist.

130 records · Page 8Linked to original sources

Thioamide substrate probes of metal-substrate interactions in carboxypeptidase A catalysis.

Three thioamide peptides in which the oxygen atom of the scissile peptide bond is replaced by sulfur (denoted by (= S)) were synthesized and found to be good, convenient substrates for carboxypeptidase A. The thioamide bond absorbs strongly in the ultraviolet region, and enzymatic hydrolysis is monitored easily using a continuously recording spectrophotometric assay. The reaction follows Michaelis-Menten kinetics with kcat values of 68, 9.0, and 3.7 sec-1 and Km values of 0.83, 0.81, and 0.53 mM for Z-Glu-Phe(= S)-Phe, Z-Gly-Ala(= S)-Phe, and Z-Phe(= S)-Phe, respectively. Activities of the thioamides and their oxygen amide analogs were determined with a series of metal-substituted carboxypeptidases. The Cd(II), Mn(II), Co(II), and Ni(II) enzymes exhibit 30%-35%, 60%-85%, 150%-190%, and 40%-55% of the Zn(II) enzyme activity with the amide substrates; this compares with 240%-970%, 0%-15%, 340%-840%, and 30%-140% of the Zn(II) activity, respectively, with the thioamides. The activity of the Cu(II) and Hg(II) enzymes is less than 3% toward all substrates. Cadmium, a thiophilic metal, yields an enzyme which is exceedingly active with the thioamides; the kcat/Km values are 2.4-9.7-fold higher than with Zn(II) carboxypeptidase. In contrast, Mn(II), which has a relatively low affinity for sulfur, yields an enzyme with correspondingly low activity toward the thioamides. The results are consistent with a mechanism for peptide bond hydrolysis in which the metal atom interacts with the substrate carbonyl atom during catalysis.

Amides↗

Effects of long-term exposure to trichloroethylene on the behavior of Mongolian gerbils (Meriones unguiculatus).

Two groups of Mongolian gerbils (Meriones unguiculatus) were continuously exposed to 150 ppm trichloroethylene (TCE) for 71 and 106 d, respectively. The behavior of the animals was tested in a symmetrical maze baited with sunflower seeds during a period of 23 d, beginning at the end of exposure. One additional group was exposed for 150 d and then allowed 40 d free from exposure before the start of the maze test. Comparisons between the TCE- and air-exposed animals showed differences in the number of correct choices and the number of seeds consumed in the maze, both after 71 and 106 d of exposure and at the end of the 40-d rehabilitation period that followed the 150-d exposure. The results were interpreted in terms of the "emotionality" of the animals.

Animals↗

Leukocyte overshoot: a new sign of bioincompatibility in fast hemodialysis.

A high blood flow of 400 ml/min induces leukocytosis after 2 hr of dialysis with leukocyte concentrations of 110-150% of predialysis values. The leukocytosis occurs with both low and high biocompatible membranes, such as Cuprophan, Hemophan, and Polyamide. Cuprophan induces the most profound leukopenia, and also induces the most pronounced leukocytosis. For treatments with a given membrane there was, however, no correlation between leukopenia and leukocytosis. Leukopenia was independent of blood flow, while leukocytosis was strongly influenced by this factor. These observations indicate that different factors cause leukopenia and leukocytosis. Although a larger area induced more leukopenia, the effect was small. Membrane area had no effect on leukocytosis. There were no acute clinical side effects during dialysis that could be related to the leukocyte overshoot. The cause and chronic clinical consequences of leukocyte overshoot are unknown.

Adult↗