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  2. Nucleic acid double helix - Wikipedia

    en.wikipedia.org/wiki/Nucleic_acid_double_helix

    The double-helix model of DNA structure was first published in the journal Nature by James Watson and Francis Crick in 1953, [6] (X,Y,Z coordinates in 1954 [7]) based on the work of Rosalind Franklin and her student Raymond Gosling, who took the crucial X-ray diffraction image of DNA labeled as "Photo 51", [8] [9] and Maurice Wilkins, Alexander Stokes, and Herbert Wilson, [10] and base-pairing ...

  3. Henrietta Lacks - Wikipedia

    en.wikipedia.org/wiki/Henrietta_Lacks

    Henrietta Lacks (born Loretta Pleasant; August 1, 1920 – October 4, 1951) [2] was an African-American woman [5] whose cancer cells are the source of the HeLa cell line, the first immortalized human cell line [B] and one of the most important cell lines in medical research. An immortalized cell line reproduces indefinitely under specific ...

  4. Nucleic acid tertiary structure - Wikipedia

    en.wikipedia.org/wiki/Nucleic_acid_tertiary...

    Three DNA conformations are believed to be found in nature, A-DNA, B-DNA, and Z-DNA. The "B" form described by James D. Watson and Francis Crick is believed to predominate in cells. [ 2 ] James D. Watson and Francis Crick described this structure as a double helix with a radius of 10 Å and pitch of 34 Å , making one complete turn about its ...

  5. Long interspersed nuclear element - Wikipedia

    en.wikipedia.org/wiki/Long_interspersed_nuclear...

    ORF1 proteins form trimers, exhibiting RNA binding and nucleic acid chaperone activity. Long interspersed nuclear elements (LINEs) [1] (also known as long interspersed nucleotide elements [2] or long interspersed elements [3]) are a group of non-LTR (long terminal repeat) retrotransposons that are widespread in the genome of many eukaryotes.

  6. Nucleic acid sequence - Wikipedia

    en.wikipedia.org/wiki/Nucleic_acid_sequence

    Given the two 10-nucleotide sequences, line them up and compare the differences between them. Calculate the percent difference by taking the number of differences between the DNA bases divided by the total number of nucleotides. In this case there are three differences in the 10 nucleotide sequence. Thus there is a 30% difference.

  7. Nucleic acid structure - Wikipedia

    en.wikipedia.org/wiki/Nucleic_acid_structure

    A-DNA, is a form of the DNA duplex observed under dehydrating conditions. It is shorter and wider than B-DNA. RNA adopts this double helical form, and RNA-DNA duplexes are mostly A-form, but B-form RNA-DNA duplexes have been observed. [14] In localized single strand dinucleotide contexts, RNA can also adopt the B-form without pairing to DNA. [15]

  8. Nuclear organization - Wikipedia

    en.wikipedia.org/wiki/Nuclear_Organization

    Second, individual chromosome preference is variable among different cell types. For example, the X-chromosome has shown to localize to the periphery more often in liver cells than in kidney cells. [45] Another conserved property of chromosome territories is that homologous chromosomes tend to be far apart from one another during cell interphase.

  9. Short interspersed nuclear element - Wikipedia

    en.wikipedia.org/wiki/Short_interspersed_nuclear...

    These DNA breaks are utilized to prime reverse transcriptase, ultimately integrating the SINE transcript back into the genome. [22] SINEs nonetheless depend on enzymes coded by other DNA elements and are thus known as non-autonomous retrotransposons as they depend on the machinery of LINEs, which are known as autonomous retrotransposons. [23]