Showing posts with label DNA sequences. Show all posts
Showing posts with label DNA sequences. Show all posts

Monday, February 09, 2009

GATTACA possible in 2019



2019....looks like a good year for a science fiction movie...does it? 2019 will be here in just a bit more that 3500 days! What can be achieved in 3500 days? A lot! I remember seeing the GATTACA movie (more than 3500 days ago), I remember finding it realistic and scary. I remember thinking of George Orwell's 1984, which I read in 1984 (just a bit more than 3500 days before)! I also know how weak humans can be compared to big corporations. Imagine....2019. Imagine having your own genome sequences before you can even recognize the letters A, C, G and T. Imagine your data being downloaded to an insurance company computer. Do not get me wrong, I love the fact that we might be able to prevent horrible diseases, I love the fact that some children will be able to achieve their true potential because they will be taken care of at the right time....but there is a dark side to that story and I know we, humans, have a record of creating problems at a much faster rate than we can find solutions for the same problems.....

Every baby born a decade from now will have its genetic code mapped at birth, the head of the world's leading genome sequencing company has predicted.

A complete DNA read-out for every newborn will be technically feasible and affordable in less than five years, promising a revolution in healthcare, says Jay Flatley, the chief executive of Illumina.

Only social and legal issues are likely to delay the era of “genome sequences”, or genetic profiles, for all. By 2019 it will have become routine to map infants' genes when they are born, Dr Flatley told The Times.

source: http://www.timesonline.co.uk/tol/news/uk/science/article5689052.ece

Thursday, November 23, 2006

Epigenetics and missing parts: The making of the Homo sapiens machine



Who would have thought? We are not exactly what our genes say we are...

As you know, we have tow sets of chromosomes. One of paternal origin and the other, well, from our mom! Genetic traits are transmitted from generation to generation and this long nose of yours is probably found in some of your family members. It has been found that we are more than that. In fact, tiny modifications on your DNA control the way the genes are turned on...or off! In plants, environmental stress on a generation can modify the expression of some genes in the next. How can stress affect the way the next generation behaves. Is that possible in humans? Some think it is. Stress, nutrition and possibly other factors can influence the way our DNA is expressed. Thses factors modify DNA structure by adding methyl groups (-CH3) here and there. These modifications, leave the sequence intact and can be passed to the next generation. These modifications can either activate or inhibit gene expression.

Ragarding stress, an important and interesting experiment is taking place. Dr. Rachel Yehuda, a specialist of posttraumatic stress disorder, is following the offspring of women working at or at close proximity of the WTC towers. In one of their studies, they found that head circumference was decreased in infants born from these mothers. In the years to come, the children will be followed for neurological development. Some researchers have found that malnutrition of an expecting mother can increase her offsprings chances to develop diabetes stroke and even heart disease later in life...you see, we are not what our genes say we are.

Furthermore, it is known that our individual DNA is different from other individual. We might share 99.9% of the DNA sequences, there are many spots where these sequences are different. These differences help pharmaceutical companies to understand why some people are fast or slow drug metabolizers. It helps police to identify criminals that leave biological tracks and help body identification when disaster strikes. It now seems that there are more differences in our DNA than previously thought. In the latest Nature issue (23 november 2006), researchers demonstrated that genetic variation within individuals is more complex than previously assessed. In some cases, whole sequences were deleted.