Skapad av: roberto.c.alfredo i biology
A neuron and a muscle cell do very different things. One participates in electrical signaling; the other contracts to produce movement. They have different shapes, different responsibilities, and different collections of proteins that make their specialized functions possible.
Yet, in an ordinary mammalian body, these two cells contain essentially the same DNA. Almost all the genetic instructions needed to build either kind of cell are present in both.
How can the same genetic information produce such different results?
Part of the answer is gene regulation. Cells do not use every gene in their genomes equally. Instead, they express some genes at high levels, keep others relatively quiet, and adjust their activity according to their identity and circumstances. When biologists say a gene is expressed, they mean that its information is being used to produce RNA, which in many cases provides the instructions for making a protein.
Cells have several interacting mechanisms for regulating this process. One involves something rather remarkable: making small chemical changes to DNA itself, without changing the sequence of genetic instructions.
This process is called DNA methylation.
DNA methylation is one of the molecular mechanisms studied under epigenetics, a field concerned with how cells regulate and sometimes maintain patterns of gene activity without altering the underlying DNA sequence. Not every epigenetic modification is permanent or inherited, but some can contribute to regulatory states that persist as cells divide.