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News tagged with chromatin

Scientists develop the first atomic view of key genetic processes (w/ Video)

In a landmark study to be published in the journal Nature, scientists have been able to create the first picture of genetic processes that happen inside every cell of our bodies. Using a 3-D visualization method ...

Chemistry / Biochemistry

created Aug 25, 2010 | popularity 4.9 / 5 (7) | comments 0 | with audio podcast

Genetic packing: Successful stem cell differentiation requires DNA compaction, study finds

(Phys.org) -- New research findings show that embryonic stem cells unable to fully compact the DNA inside them cannot complete their primary task: differentiation into specific cell types that give rise to ...

Biology / Cell & Microbiology

created May 11, 2012 | popularity not rated yet | comments 0 | with audio podcast

On the move for repair

Scientists from the Friedrich Miescher Institute for Biomedical Research have elucidated mechanisms that control DNA movement in the nucleus. They found that DNA with double-strand breaks moves more than undamaged ...

Biology / Cell & Microbiology

created Apr 17, 2012 | popularity not rated yet | comments 0 | with audio podcast

Researchers discover key aspect of process that activates breast cancer genes

Researchers at the Keck School of Medicine of the University of Southern California (USC) have discovered key processes by which estrogen, the female sex hormone, activates genes in breast-cancer cells. Greater understanding ...

Chemistry / Biochemistry

created Nov 15, 2011 | popularity 5 / 5 (2) | comments 0 | with audio podcast

New technique gives precise picture of how regulatory RNA controls gene activity

A new technique developed by researchers at the Stanford University School of Medicine allows researchers to identify the exact DNA sequences and locations bound by regulatory RNAs. This information is necessary to understand ...

Biology / Cell & Microbiology

created Sep 29, 2011 | popularity 5 / 5 (2) | comments 0 | with audio podcast

Scientists discover secret life of chromatin

Chromatin - the intertwined histone proteins and DNA that make up chromosomes – constantly receives messages that pour in from a cell’s intricate signaling networks: Turn that gene on. Stifle that one.

Biology / Cell & Microbiology

created Sep 01, 2011 | popularity 4 / 5 (2) | comments 0 | with audio podcast

Biologists' discovery may force revision of biology textbooks

Basic biology textbooks may need a bit of revising now that biologists at UC San Diego have discovered a never-before-noticed component of our basic genetic material.

Biology / Cell & Microbiology

created Aug 18, 2011 | popularity 4.7 / 5 (23) | comments 2 | with audio podcast

Epigenomic findings illuminate veiled variants

Genes make up only a tiny percentage of the human genome. The rest, which has remained measurable but mysterious, may hold vital clues about the genetic origins of disease. Using a new mapping strategy, a collaborative team ...

Medicine & Health / Genetics

created Mar 23, 2011 | popularity 5 / 5 (1) | comments 1 | with audio podcast

Ticking of cellular clock promotes seismic changes in the chromatin landscape associated with aging

Like cats, human cells have a finite number of lives-once they divide a certain number of times (thankfully, more than nine) they change shape, slow their pace, and eventually stop dividing, a phenomenon called ...

Biology / Cell & Microbiology

created Oct 03, 2010 | popularity 4.8 / 5 (19) | comments 0 | with audio podcast

Researchers create first molecule blocks key component of cancer genes' on-off switch

In the quest to arrest the growth and spread of tumors, there have been many attempts to get cancer genes to ignore their internal instruction manual. In a new study, a team led by Dana-Farber Cancer Institute scientists ...

Medicine & Health / Cancer

created Sep 24, 2010 | popularity 5 / 5 (11) | comments 1 | with audio podcast

Scientists uncover function of potential cancer-causing gene product

The Stowers Institute's Conaway Lab has uncovered a previously unknown function of a gene product called Amplified in Liver Cancer 1 (Alc1), which may play a role in the onset of cancer. The work was published yesterday by ...

Medicine & Health / Medical research

created Aug 09, 2009 | popularity not rated yet | comments 1

UCSD Engineer Provides Insights to Decades-Old DNA Squabble

(PhysOrg.com) -- A group of nanoengineers, biologists and physicists have used innovative approaches to deduce the internal structure of chromatin, a key player in DNA regulation, to reconcile a longstanding ...

Chemistry / Biochemistry

created Jul 31, 2009 | popularity 3.7 / 5 (3) | comments 0

BRIT1 allows DNA repair teams access to damaged sites

Like a mechanic popping the hood of a car to get at a faulty engine, a tumor-suppressing protein allows cellular repair mechanisms to pounce on damaged DNA by overcoming a barrier to DNA access.

Biology / Cell & Microbiology

created Jun 19, 2009 | popularity 5 / 5 (2) | comments 0

Good fences make good neighbors

Our genome is a patchwork of neighborhoods that couldn't be more different: Some areas are hustling and bustling with gene activity, while others are sparsely populated and in perpetual lock-down. Breaking ...

Medicine & Health / Cancer

created May 14, 2009 | popularity 5 / 5 (1) | comments 0

Protein complex shown to play pivotal role in stem cell development in 2 Stanford studies

Scientists at the Stanford University School of Medicine have identified a protein complex important in controlling whether embryonic stem cells retain their ability to become any cell in the body — a quality called pluripotency ...

Medicine & Health / Medical research

created Mar 02, 2009 | popularity not rated yet | comments 0

Chromatin

Chromatin is the combination of DNA and proteins that make up the contents of the nucleus of a cell. The primary functions of chromatin are; to package DNA into a smaller volume to fit in the cell, to strengthen the DNA to allow mitosis and meiosis and prevent DNA damage, and to control gene expression and DNA replication. The primary protein components of chromatin are histones that compact the DNA. Chromatin is only found in eukaryotic cells: prokaryotic cells have a very different organization of their DNA which is referred to as a genophore (a chromosome without chromatin).

The structure of chromatin depends on several factors. The overall structure depends on the stage of the cell cycle: during interphase the chromatin is structurally loose to allow access to RNA and DNA polymerases that transcribe and replicate the DNA. The local structure of chromatin during interphase depends on the genes present on the DNA: DNA coding genes that are actively transcribed ("turned on") are more loosely packaged and are found associated with RNA polymerases (referred to as euchromatin) while DNA coding inactive genes ("turned off") are found associated with structural proteins and are more tightly packaged (heterochromatin). Epigenetic chemical modification of the structural proteins in chromatin also alter the local chromatin structure, in particular chemical modifications of histone proteins by methylation and acetylation. As the cell prepares to divide, i.e. enters mitosis or meiosis, the chromatin packages more tightly to facilitate segregation of the chromosomes during anaphase. During this stage of the cell cycle this makes the individual chromosomes in many cells visible by optical microscope.

In general terms, there are three levels of chromatin organization:

There are, however, many of cells which do not follow this organisation. For example spermatozoa and avian red blood cells have more tightly packed chromatin than most eukaryotic cells and trypanosomatid protazoa do not condense their chromatin into visible chromosomes for mitosis.

For more information about Chromatin, read the full article at Wikipedia.
This text uses material from Wikipedia and is available under the GNU Free Documentation License.