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Biomedical subjects

J J Hutton

Publications and source records attributed to J J Hutton.

At least 91 records · Page 5Linked to original sources

Glucose phosphate isomerase deficiency with hereditary nonspherocytic hemolytic anemia.

Eight children (5 living, 3 deceased) with severe hereditary nonspherocytic hemolytic anemia caused by glucose phosphate isomerase deficiency have been observed in two Kentucky and Indiana families. All affected children were severely anemic in early life. Three deaths occurred in young patients who did not receive adequate transfusions of blood or whose parents refused to permit splenectomy. Splenectomy generally abolishes the requirement for blood transfusion. No patient has required regular transfusion of blood after puberty. Growth and development have been surprisingly normal and no patient has died of infection. The anemia is expressed as an autosomal recessive trait, but the enzyme variant can be detected in hematologically normal heterozygotes. The abnormal isomerase molecule is heat labile and is contained in neutrophils and lymphocytes as well as in erythrocytes.

Adult↗

Terminal deoxyribonucleotidyl transferase in human leukemia.

Terminal deoxyribonucleotidyl transferase (EC 2.7.7.31; nucleoside triphosphate:DNA nucleotidylexotransferase) is usually found only in thymus, but has been reported in leukemic cells from children with acute lymphoblastic leukemia. In an unusual adult patient with acute myelomonocytic leukemia, terminal transferase was found at a level of 16 units per 10(8) bone marrow cells and 14 units per 10(8) circulating leukocytes (1 unit = 1 nmol of nucleotide per hr). This activity is comparable to that found in normal thymus. Assays of transferase in marrow and peripheral leukocytes from patients with typical acute and chronic myelogenous leukemias gave average values of 0.5 and 0.3 unit per 10(8) cells, respectively. Transferase activity is also found in normal bone marrow at about 0.07 unit per 10(8) cells. Terminal deoxyribonucleotidyl transferase in all samples of human marrow and peripheral blood had reaction characteristics, sedimentation, and chromatographic properties similar to the homogeneous enzyme from calf thymus.

Aged↗

Genetic relationship between aryl hydrocarbon hydroxylase inducibility and chemical carcinogen induced skin ulceration in mice.

Inbred strains of mice show differential skin inflammatory reactivity following the topical application of polycyclic hydrocarbons. Strains also differ in the extent to which hepatic aryl hydrocarbon hydroxylase activity is induced by these compounds. Differential inflammatory response and hydroxylase inducibility are genetically controlled by alleles at the In and Ahh loci, respectively. Genetic analyses and strain surveys indicate that the In and Ahh loci are identical, or very closely linked.

Alleles↗

Assignment of four linkage groups to chromosomes in Mus musculus and a cytogenetic method for locating their centromeric ends.

The mitotic chromosomes in primary cultured cells from mouse embryos of the translocation stocks, T(5;18)26H, T(5;11)7Ca, and T(14;17)264Ca, have been identified by their distinctive fluorescent-banding patterns after staining with quinacrine mustard. In this way, linkage group (LG) V has been assigned to chromosome 2, LGXVIII to chromosome 9, and LGXIV and LGXVII to either of chromosomes 3 or 13. The assignment of LGXI to chromosome 6 has been confirmed. The centromeres of chromosomes 1 (LGXIII), 2 (LGV), 9 (LGXVIII), and 16 (LGIX) have been located at the ends nearest the genes fuzzy (fz), Danforth's short tail (Sd), nervous (nr), and T of their respective linkage groups by a cytogenetic method. The centromere of the X (LGXX) has been tentatively assigned to the end nearest to the scurfy (sf) locus.

Animals↗