Radioisotopes and Life Processes (Revised)Kisieleski, Walter E.
Science
Radioisotopes and Life Processes (Revised)
Kisieleski, Walter E.
Biology; Radioactive tracers
It is clear that autoradiography enables us to find out _which_ cells
are dividing in a cell population and _how many_ of them do so. For
instance, in a given tissue or organ, not all cells are capable of
dividing into two daughter cells. In the epidermis, which is the thin
outer layer of the skin, only cells in the deepest portion can divide.
The other cells, although originating from cells in the deep layer, have
lost the capacity to divide, and eventually die without further
division. If we take a bit of skin, expose it to tritiated thymidine,
and determine the amount of radioactivity incorporated into the skin
cells’ DNA, we obtain a fair measurement of the amount of DNA being
synthesized. However, this purely biochemical investigation cannot
possibly give any information on which specific cells are synthesizing
DNA. For this, autoradiography provides the information we need.
RNA SYNTHESIS: HOW TO TRANSLATE ONE LANGUAGE INTO ANOTHER
_Mathematicians are like Frenchmen: whatever you say to them they
translate into their own language, and forthwith it is something
entirely different._
Wolfgang von Goethe
We have mentioned previously that there are two main types of nucleic
acids: DNA, the genetic material itself, and RNA, the molecule that
translates the genetic message from DNA into terms the cell can use as
“instructions” for making protein. Cells differ from each other on the
basis of kinds of proteins they contain, and, since differences among
cells determine differences among organisms, it follows that differences
in the composition of DNA serve to explain the variety in living
organisms populating the world. However, if differences between two
organisms can be explained by differences in the chemical composition of
their respective DNA’s, how can we explain differences between cells of
the same organism? How can we explain that cells of the human pancreas
secrete insulin, whereas other cells in man produce no insulin? Or how
can we explain that certain cells make bone and others make fat? If
indeed all cells in the same organism contain the same amount and kind
of DNA (since all DNA in an organism derives from the duplication of the
DNA of the fertilized egg cell and its descendants), it would seem, at
first glance, that DNA is not the molecule responsible for differences
among the cells. The clarification of this apparent contradiction is
found in the remarkable properties of the other nucleic acid, the
translator molecule, RNA.
Three Kinds of RNA
Public-domain text, read in full here on John Shaqi.
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