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D C Bennett

Publications and source records attributed to D C Bennett.

At least 73 records · Page 4Linked to original sources

Mechanisms of differentiation in melanoma cells and melanocytes.

Literature is reviewed on the mechanisms of differentiation in mammalian melanoma cells and normal melanocytes. Pigment cells are particularly useful for studies requiring the observation of differentiation in living cells, for example, studies of commitment. Topics discussed include melanin synthesis and other markers of pigment cell differentiation; stochastic models of differentiation and commitment; the lability of early stages of differentiation; extracellular factors affecting pigment cell differentiation, with implications for intracellular controls; the role of proliferation and the cell cycle in differentiation, and the relative roles of changes in transcription, translation, and posttranslational processes.

Animals↗

A line of non-tumorigenic mouse melanocytes, syngeneic with the B16 melanoma and requiring a tumour promoter for growth.

An immortal line of pigmented melanocytes, "melan-a", has been derived from normal epidermal melanoblasts from embryos of inbred C57BL mice. The conditions favouring proliferation of these cells largely resemble those for normal, non-established mouse melanoblasts and melanocytes, and include a low extracellular pH and the presence of a tumour promoter, tetradecanoyl phorbol acetate (TPA) or teleocidin. Melan-a cells have the diploid chromosome number and do not form tumours in syngeneic or nude mice. They are therefore the first known line of non-tumorigenic mouse melanocytes, although an aneuploid melanocyte line of untested tumorigenicity has been reported (Sato et al., 1985). Melan-a cells are syngeneic with the B16 melanoma and its sublines, and provide an excellent parallel non-tumorigenic line for studies of the cellular and molecular basis of melanoma malignancy.

Animals↗

Differentiation apparently repressed by the nucleus. Rapidly-induced pigmentation of enucleated melanoma cells.

There is evidence for cytoplasmic control over gene expression in cell differentiation, but still very little is known of the intracellular mechanism, nuclear, cytoplasmic, or both, which actively initiates the differentiation of one cell type into another. Here the role of the cytoplasm was examined in the induction of differentiation of cultured mouse melanoma cells by melanocyte-stimulating hormone and alkaline medium. Intact cells were compared with cytoplasts, cells enucleated by centrifugation in the presence of cytochalasin D (CD). Surprisingly, early inductions of pigment (melanin) synthesis and of the principal melanin-synthesizing enzyme activity, tyrosinase, could be achieved in cytoplasts. Indeed these early changes were slower in nucleated cells and were accelerated by the inhibitor of protein synthesis, cycloheximide. Thus the initial activation of tyrosinase and melanin synthesis--although not necessarily any other or later aspects of melanoma cell differentiation--is apparently controlled through a labile, transcription- and translation-dependent repression. To our knowledge this is a novel mechanism for the initiation of differentiation; its generality remains to be tested.

Animals↗

The Shrunken gene on chromosome 9 of Zea mays L is expressed in various plant tissues and encodes an anaerobic protein.

The Shrunken gene, located on the short arm of chromosome 9 of Zea mays, encodes the enzyme sucrose synthase (EC 2.4.1.13). The gene is known to be expressed in the endosperm of the developing maize kernel and seems to be involved in sucrose breakdown prior to starch synthesis. We have analyzed different tissues of the maize plant for transcripts of the Shrunken gene and have found rather high transcription rates in the etiolated shoot and the primary root of the germinating kernel. If the etiolated seedlings are illuminated, the transcript level drops by about 95% in the greening plant parts (1st and 2nd leaves) which are active in photosynthesis. A very low transcript level is found in mature green leaves where sucrose is formed from products of photosynthesis via a separate pathway. Upon anaerobic stress of the young seedling, the level of Shrunken transcripts increases 10 and 20 times in shoot and root tissue respectively. Apparently anaerobic induction supersedes the negative control that is observed after illumination in the 1st and 2nd leaves. From the experiments outlined here we conclude that the anaerobic protein 87 (ANP87, Hake et al. 1985) is encoded by the Shrunken locus. While the expression of the Shrunken gene varies in different tissues and in response to external stimuli, transcription of the second sucrose synthase (B) gene seems to be irresponsive to anaerobic stress and to be expressed at a similar low level in all of the tissues examined.

Alcohol Dehydrogenase↗

Increased experimental metastatic capacity of a murine melanoma following induction of differentiation.

Because of the interest in possible links between defective differentiation and cellular malignancy, the effects were examined of induced cell differentiation upon the experimental metastatic potential of the sublines F1 and F10 of the B16 mouse melanoma. These cell lines normally have low and high rates, respectively, of colonization of the lungs of mice after i.v. injection. Cellular differentiation was assessed by pigmentation and tyrosinase activity. In both cell lines, low and high levels of differentiation could reproducibly be generated by culture, respectively, at a low extracellular pH and at a higher pH in the presence of a melanocyte-stimulating hormone. Surprisingly, in both lines the cells grown under conditions promoting differentiation showed a markedly higher rate of experimental metastasis, despite their slower proliferation in culture and in subcutaneous tumor implants, than the poorly differentiated cells. Radiolabeled well- and poorly pigmented cells were not initially deposited at significantly different rates in the lungs of mice after i.v. injection. However, subsequent retention in the lungs fell more quickly for the poorly differentiated cells. As indicated by tests in vitro, this difference appears not to be due to differential cytotoxicity by either host macrophages or natural killer cells, and it is under further study.

Animals↗

Maize Adh1.

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Alcohol Dehydrogenase↗

Clonal separation of mature melanocytes from premelanocytes in a diploid human cell strain: spontaneous and induced pigmentation of premelanocytes.

Strains of pigmented melanocytes can be derived reproducibly from normal human skin. Published procedures have been modified here to yield a strain, 'Nohm-1', comprising many unpigmented cells as well as cells with various degrees of pigmentation observable by light microscopy. The unpigmented cells contain early melanosomes (pigment organelles) and the specific enzyme tyrosinase. They are on average smaller and less dendritic than the pigmented cells. Nohm-1 cells show normal chromosomal banding patterns and normal proliferative behaviour, including senescence. They form no tumours in immunodeficient (nude) mice. Nohm-1 cells have been cloned and yield two distinct types of colony, depending on the progenitor cell. Well-pigmented melanocytes engender pure colonies of pigmented cells, but cells with little or no pigment can produce both unpigmented and pigmented progeny. Thus there is a separate cell type, or premelanocyte, which can differentiate spontaneously and stably in culture; this cell type includes both unpigmented and faintly pigmented cells. Usefully, most premelanocytes are viable after frozen storage, unlike well-pigmented melanocytes. Some components of the culture medium affect the proportion of pigmented cells in Nohm-1 cultures, and hence probably the ratio of mature melanocytes to premelanocytes. Rapid pigmentation can be induced artificially and simply, by using a medium with increased extracellular pH and tyrosine concentration.

Cell Differentiation↗

Isolation and analysis of two Escherichia coli K-12 ilv attenuator deletion mutants with high-level constitutive expression of an ilv-lac fusion operon.

A lysogenizing lambda phage, lambda dilv-lac11, was constructed to carry an ilvD-lac operon fusion. Expression from the phage of the ilvE and lacZ genes is controlled by an intact ilv control region also carried by this phage. Two spontaneous mutants of lambda dilv-lac11 that have high-level constitutive expression of the ilv-lac fusion operon were isolated by growth on a beta-chloroalanine selective medium. The mutants were shown by nucleotide sequence determination to contain large deletions (delta 2216, approximately 1.6 kilobases; delta 2219, approximately 1.9 kilobases), which in both cases remove the proposed ilv attenuator terminator. The rest of the ilv leader and promoter region DNA remains intact in these mutants. Deletion 2216 also removed part of the downstream ilvG gene, whereas delta 2219 extended through the entire ilvG gene into the ilvGE intercistronic region. A possible mechanism of deletion formation is discussed.

Bacteriophage lambda↗

Differentiation in mouse melanoma cells: initial reversibility and an on-off stochastic model.

Various proposals that a stochastic event, "commitment," is the first and rate-limiting step in mammalian cell differentiation were tested in one cell type, B16C3 mouse melanoma cells. Differentiation (pigment production) was observed in time-lapse films and in cloned single cells. As predicted by all the theories, onset of differentiation was at widely variable times in different cells after stimulation; and selection experiments showed that little of the variability was genetic. Contrary to some theories, differentiation appeared unrelated to cell division. Two properties of the melanoma cells did not fit any of the theories: times of differentiation were highly correlated in sister cells; and differentiation could be reversed in a proportion of cells, which was highest at the lowest levels of pigmentation. Dedifferentiation was associated with cell proliferation, so that most pigmented clones were small and most unpigmented clones large. These findings are accommodated by a model in which functions associated with differentiation can switch on and off, but an inhibition of the off transition builds up in the on state.

Animals↗

Physical and genetic localization of ilv regulatory sites in lambda ilv bacteriophages.

A set of nine lambda dilv phages were used to transduce bacterial recipients containing point mutations or deletions in the ilv genes located at 84 min on the Escherichia coli K-12 chromosome. This genetic analysis indicated that two phages carry the entire ilvGEDAC cluster; others carry the complete ilvC gene and, in addition, bacterial DNA that extends to a termination point between ilvA and ilvC, within ilvD, within ilvE, or within ilvG. DNA extracted from the lambda dilv phages was digested with EcoRI, HindIII, KpnI, PstI, SalI, and SmaI. The restriction maps revealed that these phages were generated after insertion at four distinct insertion sites downstream (clockwise) of ilvC. The physical relationships between the various phages were further examined by electron microscopic heteroduplex analysis. The physical maps of the phages thus generated were straightforward and in complete accord with the genetic data. No evidence for genetic rearrangements of ilv DNA in the phage was obtained, thus validating conclusions based on the use of these phages in previous and ongoing research projects. Bacterial cells with deletions of the ilv genes were made lysogenic with lambda dilv phage to examine the regulation of ilv genes present in the phage. The results confirm previous studies showing that one site for control by repression and derepression is upstream (counterclockwise) of ilvG. It was shown, in addition, that the activities of dihydroxy acid dehydrase and threonine deaminase were increased when the prototrophic lysogens were grown with 20 mM leucine. Since this increase was exhibited even when the ilvG-linked control region was not carried by the lambda dilv phage, additional control sites must be located within the ilvEDA region of the ilvGEDA transcription unit.

Amino Acids, Branched-Chain↗

Relative map location of the rep and rho genes of Escherichia coli.

The rep gene of Escherichia coli was mapped between ilvC and rho by three-factor P1 transductional crosses and also by complementation with a set of lambda transducing phages that contain known amounts of bacterial DNA linked to ilvC. The physical distance between ilvC and rep and between rep and rho were calculated with an accuracy of +/- 0.4 kilobase to be 0 less than or equal to ilvC-rep less than or equal to 3.4 kilobases and 2.0 less than or equal to rep-rho less than or equal to 6.0 kilobases. It was shown that rho-15 is Gro+ for phage ST-1. An ilv::Tn10 mutation was located in ilvY.

Bacterial Proteins↗

Mammalian cell cycles need two random transitions.

Although a single transition in the cell cycle is both sufficient and necessary to account for the distribution of differences in the intermitotic times of sister cells, two random transitions seem necessary to account for the responses of quiescent cells to stimulation by growth factors. We propose that serum-depleted quiescent cells "rest" in an indeterminate state (Q) which they leave at random upon stimulation and initiate a lengthy process (L). Upon completion of L the cells enter another indeterminate state (A) which they also leave at random and shortly thereafter initiate S phase and subsequently divide. On leaving A they also re-enter Q, and, again at random, initiate L. This sequence, Q leads to L leads to A, is maintained in steady state proliferation, and because of the random exit from Q and A, overlaps to varying degrees with the conventional cell cycle (M-G1-S-G2-M). The hypothesis provides a qualitative account of various problematic features of the lag between stimulation and entry into S phase. It also provides a good quantitative account of the distribution of sibling differences, the correlation coefficient of sibling intermitotic times and the distribution of intermitotic times and the distribution of intermitotic times in steady state growing cultures. There are striking similarities between the hypothetical cycle and the centriole cycle.

Animals↗