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  2. Lambda phage - Wikipedia

    en.wikipedia.org/wiki/Lambda_phage

    Lambda phage will enter bacteria more easily than plasmids, making it a useful vector that can either destroy or become part of the host's DNA. [31] Lambda phage can also be manipulated and used as an anti-cancer vaccine that targets human aspartyl (asparaginyl) β-hydroxylase (ASPH, HAAH), which has been shown to be beneficial in cases of ...

  3. Lysogenic cycle - Wikipedia

    en.wikipedia.org/wiki/Lysogenic_cycle

    4. The phage DNA integrates itself into the host cell's DNA, creating prophage. 5. The prophage then remains dormant until the host cell divides. 6. After the host cell has divided, the phage DNA in the daughter cells activate, and the phage DNA begins to express itself. Some of the cells containing the prophage go on to create new phages which ...

  4. Cosmid - Wikipedia

    en.wikipedia.org/wiki/Cosmid

    A cosmid is a type of hybrid plasmid that contains a Lambda phage cos sequence. [1] Often used as cloning vectors in genetic engineering, cosmids can be used to build genomic libraries. They were first described by Collins and Hohn in 1978. [2] Cosmids can contain 37 to 52 (normally 45) kb of DNA, limits based on the normal bacteriophage ...

  5. Lytic cycle - Wikipedia

    en.wikipedia.org/wiki/Lytic_cycle

    There are three classes of genes in the phage genome that regulate whether the lytic or lysogenic cycles will emerge. The first class is the immediate early genes, the second is the delayed early genes and the third is the late genes. The following refers to the well-studied temperate phage lambda of E. coli. [citation needed]

  6. CII protein - Wikipedia

    en.wikipedia.org/wiki/CII_protein

    Such factors include temperature, [14] cellular starvation and number of phage infecting the cell (an indication of population number of phage). [4] Experiments have shown that low temperatures increase the in vivo half-life of cII from ~1-2 mins at 37˚C to 20 mins at 20˚C, thus increasing the probability of a cell to lysogenize.

  7. Lysogen - Wikipedia

    en.wikipedia.org/wiki/Lysogen

    A lysogen or lysogenic bacteria is a bacterial cell that can produce and transfer the ability to produce a phage. [1] A prophage is either integrated into the host bacteria's chromosome or more rarely exists as a stable plasmid within the host cell.

  8. Glycoside hydrolase family 24 - Wikipedia

    en.wikipedia.org/wiki/Glycoside_hydrolase_family_24

    This family includes lambda phage lysozyme and Escherichia coli T4 phage endolysin. [8] Lysozyme helps to release mature phage particles from the cell wall by breaking down the peptidoglycan. The enzyme hydrolyses the 1,4-beta linkages between N-acetyl-D-glucosamine and N-acetylmuramic acid in peptidoglycan heteropolymers of prokaryotic cell walls.

  9. Lysin - Wikipedia

    en.wikipedia.org/wiki/Lysin

    Double-stranded DNA phage lysins tend to lie within the 25 to 40 kDa range in terms of size. A notable exception is the streptococcal PlyC endolysin, which is 114 kDa. PlyC is not only the biggest and most potent lysin, but also structurally unique since it is composed of two different gene products, PlyCA and PlyCB, with a ratio of eight PlyCB subunits for each PlyCA in its active conformation.

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