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T P Hum

Publications and source records attributed to T P Hum.

4 recordsLinked to original sources

The location of sulphydryl groups in alpha-crystallin.

The microenvironments of the sulphydryl groups in the multimeric protein, alpha-crystallin, were studied by examining: the rate of the reaction of the groups with DTNB; the effect of increasing urea concentrations on their accessibilities; and the quenching of a fluorescent probe. In foetal bovine alpha-crystallin (1 SH/alpha A subunit) both kinetic and quenching studies indicated that over 90% of the sulphydryl groups fell into a single buried class; the remainder was exposed. In the human protein (2 SH/alpha A subunit), half of the groups were buried and the other half exposed. Accessible sulphydryl groups increased gradually as the urea concentration was increased, with complete exposure at about 4.0 M. Sedimentation velocity analyses revealed that no significant dissociation of the aggregates into subunits occurred below 3.5 M urea, at which point over 80% of the sulphydryl groups were exposed. An age-dependent increase (3-35%) was found in the proportion of exposed sulphydryl groups in bovine alpha-crystallin and a decrease in the urea concentration required to expose the remainder. It was concluded that the single cysteine is buried in the newly synthesized protein, but becomes solvent-exposed as a result of age-related conformational changes. Our observations are consistent with a quaternary structure in which all alpha A subunits occupy equivalent sites.

Aging↗

The state of sulphydryl groups in proteins isolated from normal and cataractous human lenses.

Individual crystallins, urea-soluble and urea-insoluble proteins were isolated from the nucleus and cortex of types I-IV cataractous lenses and normal lenses. The levels of protein sulphydryls (P-SH), disulphides (S-S), as well as surface (F-SH) and buried (S-SH) in these proteins were determined by reaction with 5, 5'-dithiotris- (2-nitrobenzoic acid) or performic acid oxidation followed by amino acid analysis. During nuclear colour development there is a progressive decrease in the sulphydryl content of the crystallins. In the nuclei of advanced cataractous lenses, the P-SH decreases to 10% of the levels found in the normal nucleus. Similar but smaller changes take place in the cortex. No specific changes were found between the crystallins, with the exception of beta S crystallin. The cysteine remains constant in all lens types suggesting no higher oxidation products are formed. There is a significant shift in the distribution of cysteine in the nucleus of type III and IV lenses. Urea-insoluble proteins are the predominant species, accounting for about 70% of the total cysteine pool. This is consistent with the accumulation of modified insoluble polypeptides during senile nuclear cataract formation.

Aged↗

The nature of disulphide bonds in rat lens proteins.

The nature of disulphide bonds in 3, 7 and 24 month old rat lens proteins has been determined in order to examine the possibility that there is a direct correlation between intermolecular disulphide bond formation and hardening of the lens during ageing. Significant levels of S-S were found in all of the crystallins, as well as in the insoluble proteins. However, no substantial changes in the molecular weight distribution of the proteins, or their constituent polypeptides, were observed after the reduction of these bonds. This indicates that almost all of the S-S bonds are intramolecular. It would appear that the hardening of the nucleus is not a result of intermolecular disulphide crosslinking during ageing. Instead, our observations suggest that intramolecular disulphide bonds may make the gamma-crystallin molecule more compact, thereby promoting closer packing in the nucleus where the concentration of this protein is highest.

Animals↗

Reconstructing normal alpha-crystallin from the modified cataractous protein.

alpha-Crystallin from human cataractous lenses is so extensively modified that it is unsuitable for structural studies. We have disassembled the protein and, from the remaining traces of unmodified polypeptides, reconstructed a more homogeneous and conformationally discrete molecule. We suggest that this approach may be particularly useful to studies of enzymology and molecular gerontology.

Cataract↗