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TIMING OF DNA SYNTHESIS IN THE MITOTIC CYCLE IN VITRO

A study was made of the timing of DNA synthesis in the mitotic cycle under conditions where the average mitotic cycle of populations of human amnion and kitten lung cells in culture was variable. Three types of experiments were performed: (a) Autoradiographs were made of incorporated tritiated thymi...

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Detalles Bibliográficos
Autores principales: Sisken, Jesse E., Kinosita, Riojun
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 1961
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2225021/
https://www.ncbi.nlm.nih.gov/pubmed/19866583
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author Sisken, Jesse E.
Kinosita, Riojun
author_facet Sisken, Jesse E.
Kinosita, Riojun
author_sort Sisken, Jesse E.
collection PubMed
description A study was made of the timing of DNA synthesis in the mitotic cycle under conditions where the average mitotic cycle of populations of human amnion and kitten lung cells in culture was variable. Three types of experiments were performed: (a) Autoradiographs were made of incorporated tritiated thymidine in cells whose mitotic histories were recorded microcinematographically allowing the measurement of telophase + G1 along with the total length of the mitotic cycle. (b) Measurement of the G2 + prophase part of the mitotic cycle was performed under various conditions by exposing cells to tritiated thymidine and observing the increase in labeled metaphases plus anaphases as a function of time. (c) The effect of a change in pH on parts of the mitotic cycle was tested by continuously photographing a single colony of cells first at pH 7.8 and then at pH 7.1. All of our data point to the same conclusion; namely, that within a population of cells with a given generation time, the length of each of the measurable parts of the mitotic cycle has a particular distribution of values and that, when there is a change in the generation time, under our conditions only the T + G1 distribution changes.
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spelling pubmed-22250212008-05-01 TIMING OF DNA SYNTHESIS IN THE MITOTIC CYCLE IN VITRO Sisken, Jesse E. Kinosita, Riojun J Biophys Biochem Cytol Article A study was made of the timing of DNA synthesis in the mitotic cycle under conditions where the average mitotic cycle of populations of human amnion and kitten lung cells in culture was variable. Three types of experiments were performed: (a) Autoradiographs were made of incorporated tritiated thymidine in cells whose mitotic histories were recorded microcinematographically allowing the measurement of telophase + G1 along with the total length of the mitotic cycle. (b) Measurement of the G2 + prophase part of the mitotic cycle was performed under various conditions by exposing cells to tritiated thymidine and observing the increase in labeled metaphases plus anaphases as a function of time. (c) The effect of a change in pH on parts of the mitotic cycle was tested by continuously photographing a single colony of cells first at pH 7.8 and then at pH 7.1. All of our data point to the same conclusion; namely, that within a population of cells with a given generation time, the length of each of the measurable parts of the mitotic cycle has a particular distribution of values and that, when there is a change in the generation time, under our conditions only the T + G1 distribution changes. The Rockefeller University Press 1961-03-01 /pmc/articles/PMC2225021/ /pubmed/19866583 Text en Copyright © Copyright, 1961, by The Rockefeller Institute Press
spellingShingle Article
Sisken, Jesse E.
Kinosita, Riojun
TIMING OF DNA SYNTHESIS IN THE MITOTIC CYCLE IN VITRO
title TIMING OF DNA SYNTHESIS IN THE MITOTIC CYCLE IN VITRO
title_full TIMING OF DNA SYNTHESIS IN THE MITOTIC CYCLE IN VITRO
title_fullStr TIMING OF DNA SYNTHESIS IN THE MITOTIC CYCLE IN VITRO
title_full_unstemmed TIMING OF DNA SYNTHESIS IN THE MITOTIC CYCLE IN VITRO
title_short TIMING OF DNA SYNTHESIS IN THE MITOTIC CYCLE IN VITRO
title_sort timing of dna synthesis in the mitotic cycle in vitro
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2225021/
https://www.ncbi.nlm.nih.gov/pubmed/19866583
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