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Martin Phillips

Publications and source records attributed to Martin Phillips.

20 records · Page 2Linked to original sources

Locking the hydrophobic loop 262-274 to G-actin surface by a disulfide bridge prevents filament formation.

Models of F-actin structure predict the importance of hydrophobic loop 262-274 at the interface of subdomains 3 and 4 to interstrand interactions in filaments. If this premise is correct, prevention of the loop conformational change--its swinging motion--should abort filament formation. To test this hypothesis, we used site-directed mutagenesis to create yeast actin triple mutant (LC)2CA (L180C/L269C/C374A). This mutation places two cysteine residues in positions potentially enabling the locking of loop 262-274 to the monomer surface via disulfide formation. Exposure of the purified mutant to oxidation catalysts resulted in an increased electrophoretic mobility of actin on SDS PAGE and a loss of two cysteines by DTNB titrations, consistent with disulfide formation. The polymerization of un-cross-linked mutant actin by MgCl2 was inhibited strongly but could be restored to wild type actin levels by phalloidin and improved greatly through copolymerization with the wild-type actin. Light scattering measurements revealed nonspecific aggregation of the cross-linked actin under the same conditions. Electron microscopy confirmed the absence of filaments and the presence of amorphous aggregates in the cross-linked actin samples. Reduction of the disulfide bond by DTT restored normal actin polymerization in the presence of MgCl2 and phalloidin. These observations provide strong experimental support for a critical role of the hydrophobic loop 262-274 in the polymerization of actin into filaments.

Actin Cytoskeleton↗

Fas-mediated apoptosis in acute alcoholic hepatitis.

BACKGROUND/AIMS: The Fas-mediated apoptosis pathway has been implicated in liver diseases. The aim of the study was to investigate the role of this system in alcoholic hepatitis. METHODOLOGY: The expression of Fas, Fas ligand, and intracellular signaling molecules for apoptosis were determined by immunoblot analysis in fresh frozen liver samples from 19 patients with alcoholic liver disease. RESULTS: Fas and Fas ligand expression was significantly increased in the liver of patients with alcoholic hepatitis (n = 11) as compared with alcoholic liver disease patients without hepatitis (n = 8). Similarly, there were significant differences in the expression of FADD, ICE, and CPP32 in the liver between the two groups. There were significant positive correlations between the Fas ligand and the FADD, ICE, or CPP32 levels in the liver. The expression of Fas, Fas ligand, FADD, ICE, or CPP32 correlated with serum markers of hepatic injury. Plasma soluble Fas levels in patients with alcoholic hepatitis (median: 15.1 U/mL, range: 9.7-19.2 U/mL) were significantly higher than in normal controls (n = 9) (median: 2.8 U/mL, range: 1.9-3.7 U/mL; p < 0.001). There was a significant positive correlation between plasma soluble Fas levels and the hepatic expression of FADD in these patients. CONCLUSIONS: These results indicate that Fas-mediated apoptosis may play an important role in alcoholic hepatitis.

Adult↗