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M L Hooper

Publications and source records attributed to M L Hooper.

At least 73 records · Page 4Linked to original sources

Isolation of cell lines from differentiating embryonal carcinoma cultures.

We report the isolation of six cell lines (designated EB cell lines) from cultures of the hypoxanthine guanine phosphoribosyl transferase-deficient (HGPRT-) feeder-dependent embryonal carcinoma cell line PSA4TG12 which have undergone in vitro differentiation, and of clonal derivatives of these lines. Whereas some lines possess quasi-diploid karyotypes similar to that of PSA4TG12, others are markedly aneuploid. Cell line EB26/1 and its clonal derivatives undergo adipogenesis in cultures maintained at confluence; in tumours formed by injection into syngeneic mice they produce muscle-like cells, cartilage and bone in addition to adipose cells. We therefore propose that EB26/1 and its clones are aneuploid derivatives of an uncommitted mesodermal cell. Cell line EB28/5 forms tumours with a histological appearance resembling that of yolk sac carcinoma but does not express biochemical markers characteristic of visceral or parietal endoderm. Cell line EB28/10n has a myoblast-like culture morphology and in tumours is capable of producing muscle-like cells, cartilage and bone. A high specific activity of alkaline phosphatase is present is two of five EB cell lines assayed, and plasminogen activator activity is present in all five. Since the EB cell lines represent populations of cells each expressing a particular subset of the genetic information present in a common ancestral genome, they will be invaluable for studying the developmental regulation of gene expression.

Alkaline Phosphatase↗

Medium conditioned by feeder cells inhibits the differentiation of embryonal carcinoma cultures.

Non-dividing STO mouse fibroblasts have been used for some time as feeder cells for maintaining certain embryonal carcinoma cells in an undifferentiated state. We report here that medium conditioned by these feeders can inhibit embryonal carcinoma (ec) cell differentiation induced either by removal from feeders, or, in the case of cells not normally requiring a feeder layer, by retinoic acid treatment.

Animals↗

Variant Chinese hamster cells resistant to the proline analog L-azetidine 2-carboxylic acid.

Variants resistant to the toxic effects of the proline analog L-azetidine 2-carboxylic acid (AZCA) have been isolated from the Chinese hamster tissue culture line G3 by a three-step selection procedure using increasing concentrations of AZCA. Cells surviving each of the three selective steps have been examined for AZCA resistance and for proline uptake, biosynthesis, and degradation. The largest increment in AZCA resistance is acquired in the third step and is due to overproduction of proline as a result of increased activity of the enzyme system responsible for the conversion of glutamic acid to glutamic gamma-semialdehyde. It is not accompanied by an increase in the rate of formation of proline from ornithine or in the rate of proline uptake or degradation.

Azetidinecarboxylic Acid↗

Alkaline phosphatase activity in mouse teratoma.

In tumors and embryoid bodies of mouse teratoma a correlation has been established between specific activity of alkaline phosphatase (EC 3.1.3.1) and content of embryonal carcinoma, the stem cell of the tumor. A histochemical study of embryoid bodies has shown that high levels of the enzyme are confined to embryonal carcinoma. Fifteen tissue culture lines could be classified into three groups: (a) lines identifiable as pluripotential embryonal carcinoma by their morphology, tumorigenicity, and capacity to differentiate in vivo; (b) nullipotential embryonal carcinoma, resembling pluripotential embryonal carcinoma in morphology and malignancy but giving rise to undifferentiated tumors; and (c) lines of apparently nonmalignant somatic cells. Both types of embryonal carcinoma possess levels of alkaline phosphatase 5- to a 100-fold higher than the somatic cell lines. The embryonal carcinoma enzyme resembles the enzymes from kidney and placenta in kinetics of thermal inactivation and sensitivity to the inhibitor L-phenylalanine, but is distinguishable from the alkaline phosphatases of liver and intestine. These findings are discussed in relation to the use of teratoma for the study of cell differentiation.

Alkaline Phosphatase↗

C-terminal truncation of WT1 delays but does not abolish hematopoiesis in embryoid bodies.

The effect of mutations that truncate the WT1 protein on in vitro hematopoietic differentiation from embryonal stem cells has been examined by CFU-A assay, o-dianisidine staining for heme, and RT-PCR analysis of the expression of fetal and adult globins. In two independently isolated ES cell lines the mutations delay but do not abolish hematopoiesis. Analysis of replated CFU-A colonies indicates that the delay occurs prior to the formation of hematopoietic stem cells. The results demonstrate a role for WT1 at the onset of hematopoiesis.

Animals↗