Difference between revisions of "Blood clotting cascade"

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(Should really have more about the process itself than Behe's claims.)
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A number of proteins are involved in the series of events that lead to vertebrate blood clotting.
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Michael Behe describes it thus:
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A number of [[protein]]s are involved in the series of events that lead to [[vertebrate]] [[blood clotting]].
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[[Michael Behe]] describes it thus:
 
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When an animal is cut, a protein called Hagemann factor (XII) sticks to the surface of cells near the wound. Bound Hagemann factor is then cleaved by a protein called HMK to yield activated Hagemann factor. Immediately the activated Hagemann factor converts another protein, called prekallikrein, to its active form, kallikrein. <ref>Behe, M. 1996. Darwin's Black Box. New York: The Free Press</ref>
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When an animal is cut, a protein called Hagemann factor (XII) sticks to the surface of [[cell]]s near the wound. Bound Hagemann factor is then cleaved by a protein called HMK to yield activated Hagemann factor. Immediately the activated Hagemann factor converts another protein, called prekallikrein, to its active form, kallikrein. <ref>Behe, M. 1996. Darwin's Black Box. New York: The Free Press</ref>
 
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Although, as Behe points out, Factor XII initiates the "cascade of proteins" in vertebrates, dolphins lack Factor XII <ref>Robinson, A. J., M. Kropatkin, and P. M. Aggeler, 1969. Hagemann Factor (Factor XII) Deficiency in Marine Mammals. Science 166: 1420-1422</ref> and yet their blood is known to clot. Similarly, molluscs such as snails have only four components in their blood clotting cascade, with a single protease step. This appears to contradict the notion of [[irreducible complexity]] in regard to this process.
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Although, as Behe points out, Factor XII initiates the "cascade of proteins" in vertebrates, [[dolphin]]s lack Factor XII <ref>Robinson, A. J., M. Kropatkin, and P. M. Aggeler, 1969. Hagemann Factor (Factor XII) Deficiency in Marine Mammals. Science 166: 1420-1422</ref> and yet their blood is known to clot. Similarly, [[mollusc]]s such as [[snail]]s have only four components in their blood clotting cascade, with a single protease step. This appears to contradict the notion of [[irreducible complexity]] in regard to this process.
  
 
==References==
 
==References==
 
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Revision as of 20:25, November 16, 2008

Template:Stub

A number of proteins are involved in the series of events that lead to vertebrate blood clotting.

Michael Behe describes it thus:

When an animal is cut, a protein called Hagemann factor (XII) sticks to the surface of cells near the wound. Bound Hagemann factor is then cleaved by a protein called HMK to yield activated Hagemann factor. Immediately the activated Hagemann factor converts another protein, called prekallikrein, to its active form, kallikrein. [1]

Behe, who is a supporter of intelligent design, argues that all of these components must be in place before the system will work:

...none of the cascade proteins are used for anything except controlling the formation of a clot. Yet in the absence of any of the components, blood does not clot, and the system fails. [2]

Although, as Behe points out, Factor XII initiates the "cascade of proteins" in vertebrates, dolphins lack Factor XII [3] and yet their blood is known to clot. Similarly, molluscs such as snails have only four components in their blood clotting cascade, with a single protease step. This appears to contradict the notion of irreducible complexity in regard to this process.

References

  1. Behe, M. 1996. Darwin's Black Box. New York: The Free Press
  2. Behe, M. 1996. Darwin's Black Box, p.86. New York: The Free Press
  3. Robinson, A. J., M. Kropatkin, and P. M. Aggeler, 1969. Hagemann Factor (Factor XII) Deficiency in Marine Mammals. Science 166: 1420-1422