(************** Content-type: application/mathematica ************** CreatedBy='Mathematica 5.0' Mathematica-Compatible Notebook This notebook can be used with any Mathematica-compatible application, such as Mathematica, MathReader or Publicon. The data for the notebook starts with the line containing stars above. To get the notebook into a Mathematica-compatible application, do one of the following: * Save the data starting with the line of stars above into a file with a name ending in .nb, then open the file inside the application; * Copy the data starting with the line of stars above to the clipboard, then use the Paste menu command inside the application. Data for notebooks contains only printable 7-bit ASCII and can be sent directly in email or through ftp in text mode. Newlines can be CR, LF or CRLF (Unix, Macintosh or MS-DOS style). 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For more information on notebooks and Mathematica-compatible applications, contact Wolfram Research: web: http://www.wolfram.com email: info@wolfram.com phone: +1-217-398-0700 (U.S.) Notebook reader applications are available free of charge from Wolfram Research. *******************************************************************) (*CacheID: 232*) (*NotebookFileLineBreakTest NotebookFileLineBreakTest*) (*NotebookOptionsPosition[ 1573592, 39748]*) (*NotebookOutlinePosition[ 1574681, 39783]*) (* CellTagsIndexPosition[ 1574637, 39779]*) (*WindowFrame->Normal*) Notebook[{ Cell[BoxData[{ RowBox[{ StyleBox[\(Supplementary\ Figure\ 1. \), FontSize->18], StyleBox[" ", FontSize->18]}], "\n", RowBox[{ StyleBox[\(A\ Mathematical\ Model\ for\ the\ Carbon\ Flow\ from\ \ Asparate\ to\ Threonine\ Biosynthetic\), FontSize->18], StyleBox[" ", FontSize->18]}], "\[IndentingNewLine]", RowBox[{ StyleBox["Pathway", FontSize->18], StyleBox[" ", FontSize->18], StyleBox["of", FontSize->18], StyleBox[" ", 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\[IndentingNewLine]\[IndentingNewLine]cAKI = 0.0001; \[IndentingNewLine]LAKI = 10000; \[IndentingNewLine]nAKI = 4; \[IndentingNewLine]KmAKIAsp = 220; \[IndentingNewLine]KiAKIAspThr = 135; \[IndentingNewLine]kcat$AKI$Asp = 100; \[IndentingNewLine]\[IndentingNewLine]cAKIII = 0.00005; \[IndentingNewLine]LAKIII = 1000; \[IndentingNewLine]nAKIII = 2; \[IndentingNewLine]KmAKIIIAsp = 30; \[IndentingNewLine]KiAKIIIAspLys = 15; \[IndentingNewLine]kcat$AKIII$Asp = 20; \[IndentingNewLine]\[IndentingNewLine]cHDHI = 0.008; \[IndentingNewLine]LHDHI = 3000; \[IndentingNewLine]nHDHI = 4; \[IndentingNewLine]KmHDHIASA = 80; \[IndentingNewLine]KiHDHIASAThr = 120; \[IndentingNewLine]kcat$HDHI$ASA = 800; \[IndentingNewLine]\[IndentingNewLine]kfHDHIAKI = 1000; \[IndentingNewLine]kfAKIHDHI = 1000; \[IndentingNewLine]\[IndentingNewLine]KmAKIIAsp = 100; kcat$AKII$Asp = 100; \[IndentingNewLine]kfAKIIAsp \[Rule] Kf[KmAKIIAsp, kcat$AKII$Asp, Lambda], \[IndentingNewLine]krAKIIAsp \[Rule] Kr[kcat$AKII$Asp, Lambda], \[IndentingNewLine]\[IndentingNewLine]kmASDAspP = 22; kcat$ASD$AspP = 40; \[IndentingNewLine]kfASDAspP \[Rule] Kf[kmASDAspP, kcat$ASD$AspP, Lambda], \[IndentingNewLine]krASDAspP \[Rule] Kr[kcat$ASD$AspP, Lambda], \[IndentingNewLine]\[IndentingNewLine]KmASDASA = 110; KmASDNADP = 140; KmASDPhosphate = 10200; kcat$ASD$ASA = 80; \[IndentingNewLine]kfASDASA \[Rule] Kf3S[KmASDASA, KmASDNADP, KmASDPhosphate, kcat$ASD$ASA, Lambda], \[IndentingNewLine]krASDASA \[Rule] Kr[kcat$ASD$ASA, Lambda], \[IndentingNewLine]\[IndentingNewLine]KmHDHIIASA = 100; kcat$HDHII$ASA = 100; \[IndentingNewLine]kfHDHIIASA \[Rule] Kf[KmHDHIIASA, kcat$HDHII$ASA, Lambda], \[IndentingNewLine]krHDHIIASA \[Rule] Kr[kcat$HDHII$ASA, Lambda], \[IndentingNewLine]\[IndentingNewLine]KmHSKHse = 110; kcat$HSK$Hse = 60; \[IndentingNewLine]kfHSKHse \[Rule] Kf[KmHSKHse, kcat$HSK$Hse, Lambda], \[IndentingNewLine]krHSKHse \[Rule] Kr[kcat$HSK$Hse, Lambda], \[IndentingNewLine]\[IndentingNewLine]KiHSKHseThr = 1000; 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