Abstract
A clonally derived amelanotic melanoma cell line repeatedly has been forced to produce pigment by the inhibitor of DNA synthesis, I-beta-D-arabinofuranosylcytosine (ara-C) at sublethal levels. One ara-C-derived melanotic line has been cloned, and has continued to produce pigment for 2 years on normal medium. The inhibitor is most effective when administered to synchronized cells in four pulses on successive days at 1.8 x 10(-5)M during the S phase of the cell cycle. Colcemid at a sublethal concentration, and growth on medium solidified with agar also evoked pigment production in this line, but a large number of other inhibitors of biosynthetic processes did not, under the conditions tested. The melanotic lines are active producers of tyrosinase (DOPA oxidase), whereas the amelanotic line produces an inhibitor of tyrosinase activity. Both enzyme and inhibitor are labile at 4 degrees C and -20 degrees C, and decay of the inhibitor in homogenates of amelanotic cells reveals a low level of residual DOPA oxidase activity. The mean population doubling time of a cloned melanotic line is 23 hr, and that of a cloned amelanotic line 16.5 hr. A similar decrease in rate of growth is found in other melanotic lines and is believed to be a significant factor in maintaining this differentiated function. Rapid growth may be related to the production of an inhibitor by the amelanotic cells.
MeSH Terms
Animals
Antimetabolites/pharmacology
Autoradiography
Catechol Oxidase/antagonists & inhibitors,biosynthesis
Cell Differentiation/drug effects
Cell Division/drug effects
Cell Line
Chromosomes
Clone Cells
Colchicine/pharmacology
Culture Media
Cytarabine/pharmacology
Melanins/biosynthesis
Melanoma/enzymology,metabolism
Mice
Models, Biological
Pigmentation/drug effects
Time Factors
Tyrosine
Chemicals
Antimetabolites
Culture Media
Melanins
Cytarabine
Tyrosine
Catechol Oxidase
Colchicine
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Silagi S
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