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1 | #include "muscle.h" |
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2 | #include "profile.h" |
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3 | |
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4 | extern void TomHydro(ProfPos *Prof, unsigned Length); |
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5 | |
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6 | // Apply hydrophobicity heuristic to a profile |
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7 | void Hydro(ProfPos *Prof, unsigned uLength) |
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8 | { |
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9 | if (ALPHA_Amino != g_Alpha) |
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10 | return; |
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11 | |
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12 | if (g_bTomHydro) |
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13 | { |
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14 | TomHydro(Prof, uLength); |
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15 | return; |
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16 | } |
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17 | |
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18 | if (0 == g_uHydrophobicRunLength) |
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19 | return; |
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20 | |
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21 | if (uLength <= g_uHydrophobicRunLength) |
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22 | return; |
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23 | |
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24 | unsigned uRunLength = 0; |
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25 | unsigned L2 = g_uHydrophobicRunLength/2; |
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26 | for (unsigned uColIndex = L2; uColIndex < uLength - L2; ++uColIndex) |
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27 | { |
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28 | ProfPos &PP = Prof[uColIndex]; |
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29 | bool bHydro = IsHydrophobic(PP.m_fcCounts); |
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30 | if (bHydro) |
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31 | { |
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32 | ++uRunLength; |
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33 | if (uRunLength >= g_uHydrophobicRunLength) |
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34 | { |
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35 | Prof[uColIndex-L2].m_scoreGapOpen *= (SCORE) g_dHydroFactor; |
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36 | Prof[uColIndex-L2].m_scoreGapClose *= (SCORE) g_dHydroFactor; |
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37 | } |
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38 | } |
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39 | else |
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40 | uRunLength = 0; |
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41 | } |
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42 | } |
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