MassBank:KOX00791p
From Metabolomics.JP
(Difference between revisions)
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&&C7H12N3O2&&C7H9N2O2&&C6H12N3&&C6H9N2O&&C6H9N2&&C5H9N2&&C5H8N2&&C5H7N2&&C4H7N2&&C4H5N2&&C4H6N&&C3H4N&& | &&C7H12N3O2&&C7H9N2O2&&C6H12N3&&C6H9N2O&&C6H9N2&&C5H9N2&&C5H8N2&&C5H7N2&&C4H7N2&&C4H5N2&&C4H6N&&C3H4N&& | ||
− | &&C7H12N3O2: C7H9N2O2 C6H12N3 C6H9N2O** C6H9N2** C5H9N2 C5H8N2 C5H7N2 | + | &&C7H12N3O2: C7H9N2O2 |
+ | b | ||
+ | &&C7H12N3O2: C6H12N3 | ||
+ | c | ||
+ | &&C7H12N3O2: C6H9N2O** C6H9N2** | ||
+ | &&C7H12N3O2: C5H9N2 | ||
+ | a | ||
+ | &&C7H12N3O2: C5H8N2 | ||
+ | a,rad. | ||
+ | &&C7H12N3O2: C5H7N2 | ||
+ | a | ||
&&C7H9N2O2: C6H9N2O* C6H9N2 C5H9N2 C5H8N2 C5H7N2 | &&C7H9N2O2: C6H9N2O* C6H9N2 C5H9N2 C5H8N2 C5H7N2 | ||
&&C6H12N3: C6H9N2 C5H9N2 C5H8N2 C5H7N2 | &&C6H12N3: C6H9N2 C5H9N2 C5H8N2 C5H7N2 |
Revision as of 15:35, 9 July 2009
General Index | Ion Frequency | Prec.-Product | Neutral Loss | Help |
IDs and Links | |
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MassBank | L-3-Methylhistidine |
CAS | |
Keio ID | M076+ |
Contents |
Top 10 Similar Molecules of L-3-Methylhistidine
Ranking | About scoring |
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The similarity score between two molecules is defined as the sum of Shannon entropy of ionic formulas shared by the molecules:
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Links
Annotations
Precursor | Product | Comments |
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C7H12N3O2 (170) | C7H9N2O2 (153) | b |
C7H12N3O2 (170) | C6H12N3 (126) | c |
C7H12N3O2 (170) | C5H9N2 (97) | a |
C7H12N3O2 (170) | C5H8N2 (96) | a,rad. |
C7H12N3O2 (170) | C5H7N2 (95) | a |
Precursor-Product Relationship
About the PP Table (行列表示について) | |
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The matrix is viewed columnwise. The topmost precursor ion in bold face produces the product ions beneath it.
Each formula in matrix cells corresponds to the neutral loss. Blackout cells indicate products that cannot be derived, and orange cells indicate a structurally plausible link produced by cleaving a single chemical bond (in cases of ring-opening, two bonds). |
行列は列方向に見ます。最上段太字の前駆イオン(precursor ion)が直下の生成イオン群(product ions)になると解釈します。
行列要素に書かれている組成式はニュートラルロスです。黒は前駆イオンから生成しえない関係、オレンジは分子構造における共有結合1本の切断(開環の場合は2本)で生じる関係を意味します。 |
KOX00791p | 170 C7H12N3O2 |
153 C7H9N2O2 |
126 C6H12N3 |
125 C6H9N2O |
109 C6H9N2 |
97 C5H9N2 |
96 C5H8N2 |
95 C5H7N2 |
83 C4H7N2 |
81 C4H5N2 |
68 C4H6N |
54 C3H4N |
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170 C7H12N3O2 |
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153 C7H9N2O2 | H3N |
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126 C6H12N3 | CO2 |
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125 C6H9N2O | CH3NO | CO |
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109 C6H9N2 | CH3NO2 | CO2 | H3N | O |
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97 C5H9N2 | C2H3NO2 | C2O2 | CH3N | CO | C |
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96 C5H8N2 | C2H4NO2 | C2HO2 | CH4N | CHO | CH | H |
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95 C5H7N2 | C2H5NO2 | C2H2O2 | CH5N | CH2O | CH2 | H2 | H |
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83 C4H7N2 | C3H5NO2 | C3H2O2 | C2H5N | C2H2O | C2H2 | CH2 | CH | C |
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81 C4H5N2 | C3H7NO2 | C3H4O2 | C2H7N | C2H4O | C2H4 | CH4 | CH3 | CH2 | H2 |
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68 C4H6N | C3H6N2O2 | C3H3NO2 | C2H6N2 | C2H3NO | C2H3N | CH3N | CH2N | CHN | HN |
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54 C3H4N | C4H8N2O2 | C4H5NO2 | C3H8N2 | C3H5NO | C3H5N | C2H5N | C2H4N | C2H3N | CH3N | CHN | CH2 |
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