On Digestive Proteolysis: Being the Cartwright Lectures for 1894Chittenden, R. H. (Russell Henry)
Science
On Digestive Proteolysis: Being the Cartwright Lectures for 1894
Chittenden, R. H. (Russell Henry)
Digestion; Digestive enzymes; Enzymes
Moreover, hydrolysis does not stop with the mere production of soluble
proteoses and peptones, but the hemi-portion of the latter is quickly
broken down into crystalline bodies, such as leucin, tyrosin, lysin,
lysatin, etc. This special characteristic of the ferment testifies
in no uncertain manner to the existence of inherent qualities in
the inner structure of the enzyme peculiar to the body itself. In
general properties and reactions, pepsin and trypsin may be closely
related; both are products of the katabolic action of specific
protoplasmic cells, but the inner nature or structure of the two must
be quite different. Pepsin, as we have seen, is powerless to produce
any change in proteid bodies unless acids are present to lend their
aid. Furthermore, pepsin is limited in its action to the production
of proteoses and peptones, while trypsin gives rise to a series
of hydrolytic cleavages which result in the ultimate formation of
comparatively simple bodies.
Trypsin, however, in its natural environment is dissolved in an
alkaline medium. Its proteolytic action is therefore carried on, under
normal circumstances, in an alkaline-reacting fluid containing 0.5
to 1 per cent. sodium carbonate, and the proteolytic power of the
ferment is unquestionably manifested to the best advantage in such a
medium. At the same time, it will act, and act vigorously, in a neutral
fluid, and likewise in a fluid having a weak acid reaction, provided
there is little or no free acid present. Thus, in experiments[168] on
blood-fibrin it was found that, while a solution of trypsin containing
0.5 per cent. sodium carbonate, digested or dissolved 89 per cent.
of the proteid in three to four hours at 40° C., a perfectly neutral
solution of the ferment, otherwise under exactly the same conditions,
digested 76 per cent., and a 0.1 per cent. salicylic acid-solution of
the enzyme converted 43 per cent. of the proteid into soluble products.
[168] Chittenden and Cummins: Studies in Physiol. Chem., Yale
University, vol. i., p. 135.
With hydrochloric acid, trypsin is quickly destroyed, unless there
is a large excess of proteid matter present,[169] which obviously
means that the acid in such case exists wholly as combined acid.
Indeed, experiments made in my laboratory have shown that as soon as
free acid, especially hydrochloric acid, is present in a solution
containing trypsin, then proteolytic action is at once stopped. When,
however, acids, especially organic acids, are present in a digestive
mixture containing an excess of proteid matter, so that the solution
contains no free acid (or better, with the proteid matter only
partially saturated with acid) then trypsin will continue to manifest
its peculiar proteolytic power, although to a considerably lessened
extent. Hence, it is evident that the ferment may exert its digestive
power under the three possible sets of conditions which, under varying
circumstances, frequently prevail in the small intestine.
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