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  2. T7 phage - Wikipedia

    en.wikipedia.org/wiki/T7_phage

    In a 1945 study by Demerec and Fano, [4] T7 was used to describe one of the seven phage types (T1 to T7) that grow lytically on Escherichia coli. [5] Although all seven phages were numbered arbitrarily, phages with odd numbers, or T-odd phages, were later discovered to share morphological and biochemical features that distinguish them from T-even phages. [6]

  3. Category:T-phages - Wikipedia

    en.wikipedia.org/wiki/Category:T-phages

    T7 phage; T7 RNA polymerase; This page was last edited on 12 June 2024, at 18:27 (UTC). Text is available under the Creative Commons Attribution ...

  4. Caudoviricetes - Wikipedia

    en.wikipedia.org/wiki/Caudoviricetes

    Once this has occurred, the prohead undergoes maturation by cleavage of capsid subunits to form an icosahedral phage head with 5-fold symmetry. After the head maturation, the tail is joined in one of two ways: Either the tail is constructed separately, and joined with the connector, or the tail is constructed directly onto the phage head.

  5. Teseptimavirus - Wikipedia

    en.wikipedia.org/wiki/Teseptimavirus

    T7 phage group was renamed to T7-like phages in the sixth report in 1995. In 1998, the whole family was moved into the newly created order Caudovirales , and the genus was renamed again in the seventh report in 1999 to T7-like viruses . 2009 saw the genus moved into the newly created subfamily Autographivirinae , and it was renamed again in ...

  6. T7 DNA helicase - Wikipedia

    en.wikipedia.org/wiki/T7_DNA_Helicase

    T7 DNA helicase (gp4) is a hexameric motor protein encoded by T7 phages that uses energy from dTTP hydrolysis to process unidirectionally along single stranded DNA, separating the two strands as it progresses. It is also a primase, making short stretches of RNA that initiates DNA synthesis. [2] It forms a complex with T7 DNA polymerase.

  7. Lysogenic cycle - Wikipedia

    en.wikipedia.org/wiki/Lysogenic_cycle

    Temperate phages (such as lambda phage) can reproduce using both the lytic and the lysogenic cycle. [4] How a phage decides which cycle to enter depends on a variety of factors. [5] For instance, if there are several other infecting phages (or if there is a high multiplicity), it is likely that the phage will use the lysogenic cycle.

  8. Filamentous bacteriophage - Wikipedia

    en.wikipedia.org/wiki/Filamentous_bacteriophage

    The two ends of the phage are capped by a few copies of proteins that are important for infection of the host bacteria, and also for assembly of nascent phage particles. These proteins are the products of phage genes 3 and 6 at one end of the phage, and phage genes 7 and 9 at the other end.

  9. Escherichia coli BL21(DE3) - Wikipedia

    en.wikipedia.org/wiki/Escherichia_coli_BL21(DE3)

    In E. coli BL21(DE3) the expression of the T7-RNAP is suppressed by the constitutively expressed LacI repressor. LacI binds the lac operator, which is located downstream of the LacUV5 promoter, preventing the production of the T7-RNAP. However, upon supplementation of IPTG, the LacI repressor dissociates from the lac operator, allowing for the ...