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K Johe

Publications and source records attributed to K Johe.

2 recordsLinked to original sources

Delta glycophorin (glycophorin B) gene deletion in two individuals homozygous for the S--s--U-- blood group phenotype.

Blood cells from two unrelated individuals whose erythrocytes exhibit respectively N S-s-U- and MN S-s-U- blood group phenotypes were examined by immunoblotting, periodic acid-Schiff (PAS) staining, and Southern blotting. Protein bands characteristic of delta glycophorin (glycophorin B) were absent from the immunoblots of whole erythrocyte lysates when probed with polyclonal glycophorin antisera and from isolated erythrocyte membranes stained with PAS reagents. Genomic DNA from the two individuals' leukocytes was digested with a panel of restriction enzymes and probed with alpha M glycophorin cDNA obtained from human K562 leukemic cell line. The EcoRI, PstI, and KpnI restriction site patterns were identical to those of S+s+U+ controls in fragment numbers and relative size but differed from controls in band intensities. Restriction mapping with HindIII, PvuII, SacI, MspI, and BamHI revealed that S-s-U- individuals lack fragments that are reproducibly observed in S+s+U+ controls, and most likely encode delta glycophorin. Using truncated 5' and 3' cDNA segments as probes and comparing, in control individuals, hybridization intensities of fragments with amino acid sequence homologies, we have inferred the assignment of restriction fragments to the alpha and delta glycophorin genes. Our results suggest that the absence of delta glycophorin in the two S-s-U- individuals is a result of deletion of the entire delta glycophorin gene. This is the first report of a glycophorin gene deletion.

Chromosome Deletion↗

Age-dependent alterations in synaptic membrane systems for Ca2+ regulation.

The effects of aging on two neuronal plasma membrane Ca2+ regulating systems have been examined using synaptic membranes isolated from the brains of adult (5-7-month-old) and aged (23-25-month-old) Fisher 344 rats. The kinetic characteristics of the Na+-dependent Ca2+ transport system were found to be altered in the aged animals. The affinity of the transport carrier for Ca2+ was decreased in membranes from aged animals, with very little change in the maximal transport capacity of the system. The activity of the synaptic membrane Ca2+-activated, Mg2+-dependent ATPase was also altered in membranes from aged animals. In this system, however, the Vmax for Ca2+ activation of the enzymatic activity was lower in the aged animals, while there was no change in the K0.5 for Ca2+ activation. The magnitude of the alterations was small, but the differences were consistent. Even small changes in the effectiveness of the synaptic plasma membrane systems which participate in the maintenance of low intraterminal Ca2+ could progressively affect the integrity of synaptic transmission and lead eventually to neuronal cell death.

Aging↗