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・ Restricted use pesticide
・ Restricted-access barrier system
・ Restriction
・ Restriction (Archive album)
・ Restriction (mathematics)
・ Restriction digest
・ Restriction endonuclease BsobI/AvaI
・ Restriction enzyme
・ Restriction fragment
・ Restriction fragment length polymorphism
・ Restriction fragment mass polymorphism
・ Restriction landmark genomic scanning
・ Restriction map
・ Restriction modification system
・ Restriction of Hazardous Substances Directive
Restriction point
・ Restriction site
・ Restriction site associated DNA markers
・ Restriction-modification system
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・ Restrictions on cell phone use while driving in the United States
・ Restrictions on geographic data in China
・ Restrictions on political parties
・ Restrictions on the import of cryptography
・ Restrictive cardiomyopathy
・ Restrictive dermopathy
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Restriction point : ウィキペディア英語版
Restriction point
The restriction point (R) is a point in G1 of the animal cell cycle at which the cell becomes “committed” to the cell cycle and after which extracellular proliferation stimulants are no longer required.
== History of the restriction point ==
Originally, Temin showed that chicken cells reach a point at which they are committed to replicate their DNA and are not dependent on extracellular signals. About 20 years later, in 1973, Arthur Pardee demonstrated that a single restriction point exists in G1. Previously, G1 had been defined simply as the time between mitosis and S phase. No molecular or morphological place-markers for a cell's position in G1 were known. Pardee used a double-block method in which he shifted cells from one cell cycle block (such as critical amino acid withdrawal or serum withdrawal) to another and compared each block’s efficiency at preventing progression to S phase. He found that both blocks in all cases examined were equally efficient at blocking S phase progression, indicating that they must all act at the same point in G1, which he termed the “restriction point,” or R-point.
In 1985, Zetterberg and Larsson discovered that, in all stages of the cell cycle, serum deprivation results in inhibition of protein synthesis. Only in postmitotic cells (i.e. cells in early G1) did serum withdrawal force cells into quiescence (G0). In fact, Zetterberg found that virtually all of the variability in cell cycle length can be accounted for in the time it takes the cell to move from the restriction point to S phase.

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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