Okazaki fragment - translation to ρωσικά
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Okazaki fragment - translation to ρωσικά

SHORT DNA SEQUENCES SYNTHESIZED DISCONTINUOUSLY DURING DNA REPLICATION
Okizaki fragment; Okazaki Fragment; Okazaki Fragments; Semi-discontinuous replication; Okazaki fragment; Precursor fragments
  • Asymmetry in the synthesis of leading and lagging strands
  • A slight mutation in the matched nucleotides can lead to chromosomal aberrations and unintentional genetic rearrangement
  • Formation of the Okazaki fragments
  • thumb

Okazaki fragment         

общая лексика

фрагмент Оказаки (фрагмент ДНК при репликации)

Fab fragment         
  • Structure of a Fab with light and heavy chains.
Fragment binding antigen; Antigen binding fragment; Fab fragment; FAB fragment; Fab region; FAB region; Immunoglobulin fab fragments; Fab'; Fab regions; F(ab')2; Fragment antigen binding; Fab' fragment; F(ab')2 fragment; Antigen-binding fragment; Fab domain

общая лексика

антисвязывающий домен

Fab-фрагмент

Fab-область (антитела)

fragment         
WIKIMEDIA DISAMBIGUATION PAGE
Fragments; Fragment (disambiguation); Fragmentality; Fragments (album)

['frægmənt]

общая лексика

фрагмент

часть большого пакета данных или файла. Чем больше степень фрагментации дисковых файлов, тем медленнее осуществляется к ним доступ. Поэтому периодически необходимо запускать программу дефрагментации диска

фрагментировать

осколок

отрывок

побочный продукт поликонденсации

медицина

отломок

Смотрите также

blunt-end fragments; Fab fragment; Fc fragment; Klenow fragment; multigen fragment; Okazaki fragment; restriction fragment; fragmentation; fission fragment; fragment the scrap; polymer fragment; diamond fragments

существительное

[fræg'ment]

общая лексика

обломок

осколок

кусок

обыкн. обрывки

фрагмент

отрывок

обрывок

синоним

remnant, scrap, shred

антоним

totality, whole

глагол

общая лексика

разваливаться

разламываться на куски

разбивать

разламывать

раздроблять

специальный термин

дезинтегрировать

Ορισμός

Fc-фрагмент
часть молекулы иммуноглобулина, отщепляемая с помощью папаина и состоящая из двух С-концевых участков тяжелых цепей; не взаимодействует с антигеном; с Fc-фрагментом связаны способности иммуноглобулина фиксироваться на клетках, связывать комплемент, участвовать в реакции пассивной кожной анафилаксии.

Βικιπαίδεια

Okazaki fragments

Okazaki fragments are short sequences of DNA nucleotides (approximately 150 to 200 base pairs long in eukaryotes) which are synthesized discontinuously and later linked together by the enzyme DNA ligase to create the lagging strand during DNA replication. They were discovered in the 1960s by the Japanese molecular biologists Reiji and Tsuneko Okazaki, along with the help of some of their colleagues.

During DNA replication, the double helix is unwound and the complementary strands are separated by the enzyme DNA helicase, creating what is known as the DNA replication fork. Following this fork, DNA primase and DNA polymerase begin to act in order to create a new complementary strand. Because these enzymes can only work in the 5’ to 3’ direction, the two unwound template strands are replicated in different ways. One strand, the leading strand, undergoes a continuous replication process since its template strand has 3’ to 5’ directionality, allowing the polymerase assembling the leading strand to follow the replication fork without interruption. The lagging strand, however, cannot be created in a continuous fashion because its template strand has 5’ to 3’ directionality, which means the polymerase must work backwards from the replication fork. This causes periodic breaks in the process of creating the lagging strand. The primase and polymerase move in the opposite direction of the fork, so the enzymes must repeatedly stop and start again while the DNA helicase breaks the strands apart. Once the fragments are made, DNA ligase connects them into a single, continuous strand. The entire replication process is considered "semi-discontinuous" since one of the new strands is formed continuously and the other is not.

During the 1960s, Reiji and Tsuneko Okazaki conducted experiments involving DNA replication in the bacterium Escherichia coli. Before this time, it was commonly thought that replication was a continuous process for both strands, but the discoveries involving E. coli led to a new model of replication. The scientists found there was a discontinuous replication process by pulse-labeling DNA and observing changes that pointed to non-contiguous replication.

Μετάφραση του &#39Okazaki fragment&#39 σε Ρωσικά