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[Dynamics of incorporation of 3H-actinomycin D into synchronized Chinese hamster cells].

Strochkova Ls, Semina Vb

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Abstract

Dynamics of 3H-actinomycin D (3H-AMD) incorporation has been studied in the Chinese hamster synchronized cell culture (line 237) during different cell cycle phases. Intensive isotope inclusions were seen in cells during interphase: in the beginning of G1 period, in the early S period, and in the late S period, during the cell passage to G2 stage. The authors suggest that the binding of 3H-AMD by cells may be due not only to conformational changes of DNA structure, but also due to the variation in cell membrane penetration throughout the mitotic cycle.

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Dynamics of 3H-actinomycin D (3H-AMD) incorporation has been studied in the Chinese hamster synchronized cell culture (line 237) during different cell cycle phases. Intensive isotope inclusions were seen in cells during interphase: in the beginning of G1 period, in the early S period, and in the late S period, during the cell passage to G2 stage. The authors suggest that the binding of 3H-AMD by cells may be due not only to conformational changes of DNA structure, but also due to the variation in cell membrane penetration throughout the mitotic cycle.

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Available abstract

Dynamics of 3H-actinomycin D (3H-AMD) incorporation has been studied in the Chinese hamster synchronized cell culture (line 237) during different cell cycle phases. Intensive isotope inclusions were seen in cells during interphase: in the beginning of G1 period, in the early S period, and in the late S period, during the cell passage to G2 stage. The authors suggest that the binding of 3H-AMD by cells may be due not only to conformational changes of DNA structure, but also due to the variation in cell membrane penetration throughout the mitotic cycle.

Key concepts: Interphase, Chinese hamster, Mitosis, Cell cycle, Period (music), Cell culture, Cell biology, Cell

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