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Nucleus - Control Center of cell
Nucleus - Control Center of cell

... the result of how bases are arranged A joins with T (American telephone) ...
Presentation File
Presentation File

... • A person convicted of a felony in a Washington state court serving a term of imprisonment may submit to the court that entered the judgment of conviction a motion requesting DNA testing ...
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S-strain (virulent)

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Applied Genetics

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How Does DNA Control Traits? - 6thgrade

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Control of Eukaryotic Gene Expression (Learning Objectives)
Control of Eukaryotic Gene Expression (Learning Objectives)

... 1. Compare and contrast chromatin and chromosome: composition, proteins involved and level of packing. Explain the structure and function of nucleosome, histones, scaffold proteins (metaphase chromosomes) 2. Explain the role of chemical modifications: methylation of DNA and acetylation of histones i ...
Study Guide Genetic Systems 2015 File
Study Guide Genetic Systems 2015 File

... I can describe the process of transcription and translation o Tutorial: https://www.youtube.com/watch?v=h3b9ArupXZg o Resources: Transcription and translation Notes I can identify the base pair sequence of a complimentary strand of RNA if given the template strand I can use a chart to identify which ...
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Establishment of Cell Identity in Drosophila Embryos

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1. Compare the organization of prokaryotic and eukaryotic genomes.
1. Compare the organization of prokaryotic and eukaryotic genomes.

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Nucleosome



A nucleosome is a basic unit of DNA packaging in eukaryotes, consisting of a segment of DNA wound in sequence around eight histone protein cores. This structure is often compared to thread wrapped around a spool.Nucleosomes form the fundamental repeating units of eukaryotic chromatin, which is used to pack the large eukaryotic genomes into the nucleus while still ensuring appropriate access to it (in mammalian cells approximately 2 m of linear DNA have to be packed into a nucleus of roughly 10 µm diameter). Nucleosomes are folded through a series of successively higher order structures to eventually form a chromosome; this both compacts DNA and creates an added layer of regulatory control, which ensures correct gene expression. Nucleosomes are thought to carry epigenetically inherited information in the form of covalent modifications of their core histones.Nucleosomes were observed as particles in the electron microscope by Don and Ada Olins and their existence and structure (as histone octamers surrounded by approximately 200 base pairs of DNA) were proposed by Roger Kornberg. The role of the nucleosome as a general gene repressor was demonstrated by Lorch et al. in vitro and by Han and Grunstein in vivo.The nucleosome core particle consists of approximately 147 base pairs of DNA wrapped in 1.67 left-handed superhelical turns around a histone octamer consisting of 2 copies each of the core histones H2A, H2B, H3, and H4. Core particles are connected by stretches of ""linker DNA"", which can be up to about 80 bp long. Technically, a nucleosome is defined as the core particle plus one of these linker regions; however the word is often synonymous with the core particle. Genome-wide nucleosome positioning maps are now available for many model organisms including mouse liver and brain.Linker histones such as H1 and its isoforms are involved in chromatin compaction and sit at the base of the nucleosome near the DNA entry and exit binding to the linker region of the DNA. Non-condensed nucleosomes without the linker histone resemble ""beads on a string of DNA"" under an electron microscope.In contrast to most eukaryotic cells, mature sperm cells largely use protamines to package their genomic DNA, most likely to achieve an even higher packaging ratio. Histone equivalents and a simplified chromatin structure have also been found in Archea, suggesting that eukaryotes are not the only organisms that use nucleosomes.
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