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name of heme vs L-threonine

Input interpretation

heme | L-threonine
heme | L-threonine

Chemical names and formulas

 | heme | L-threonine formula | C_34H_32FeN_4O_4 | C_4H_9NO_3 Hill formula | C_34FeH_32N_4O_4 | C_4H_9NO_3 name | heme | L-threonine IUPAC name | 15, 19-bis(2-carboxyethyl)-5, 10-diethenyl-4, 9, 14, 20-tetramethyl-2$l^{5}, 22, 23$l^{5}, 25-tetraaza-1-ferraoctacyclo[11.9.1.1^{1, 8}.1^{3, 21}.0^{2, 6}.0^{16, 23}.0^{18, 22}.0^{11, 25}]pentacosa-2, 4, 6, 8, 10, 12, 14, 16(23), 17, 19, 21(24)-undecaene-2, 23-bis(ylium) | (2S, 3R)-2-azaniumyl-3-hydroxy-butanoate alternate names | (none) | 2-amino-3-hydroxybutanoic acid | L-alpha-amino-beta-hydroxybutyric acid mass fractions | C (carbon) 66.2% | Fe (iron) 9.06% | H (hydrogen) 5.23% | N (nitrogen) 9.09% | O (oxygen) 10.4% | C (carbon) 40.3% | H (hydrogen) 7.62% | N (nitrogen) 11.8% | O (oxygen) 40.3%
| heme | L-threonine formula | C_34H_32FeN_4O_4 | C_4H_9NO_3 Hill formula | C_34FeH_32N_4O_4 | C_4H_9NO_3 name | heme | L-threonine IUPAC name | 15, 19-bis(2-carboxyethyl)-5, 10-diethenyl-4, 9, 14, 20-tetramethyl-2$l^{5}, 22, 23$l^{5}, 25-tetraaza-1-ferraoctacyclo[11.9.1.1^{1, 8}.1^{3, 21}.0^{2, 6}.0^{16, 23}.0^{18, 22}.0^{11, 25}]pentacosa-2, 4, 6, 8, 10, 12, 14, 16(23), 17, 19, 21(24)-undecaene-2, 23-bis(ylium) | (2S, 3R)-2-azaniumyl-3-hydroxy-butanoate alternate names | (none) | 2-amino-3-hydroxybutanoic acid | L-alpha-amino-beta-hydroxybutyric acid mass fractions | C (carbon) 66.2% | Fe (iron) 9.06% | H (hydrogen) 5.23% | N (nitrogen) 9.09% | O (oxygen) 10.4% | C (carbon) 40.3% | H (hydrogen) 7.62% | N (nitrogen) 11.8% | O (oxygen) 40.3%

Structure diagrams

  | heme | L-threonine vertex count | 43 | 8 edge count | 52 | 11 Schultz index | 21766 | 236 Wiener index | 4937 | 65 Hosoya index | (data not available) | 24 Balaban index | 1.343 | 3.464
| heme | L-threonine vertex count | 43 | 8 edge count | 52 | 11 Schultz index | 21766 | 236 Wiener index | 4937 | 65 Hosoya index | (data not available) | 24 Balaban index | 1.343 | 3.464

3D structure

3D structure
3D structure

Basic properties

 | heme | L-threonine molar mass | 616.5 g/mol | 119.12 g/mol phase | solid (at STP) | solid (at STP) melting point | | 136 °C boiling point | | 260 °C density | | 1.464 g/cm^3
| heme | L-threonine molar mass | 616.5 g/mol | 119.12 g/mol phase | solid (at STP) | solid (at STP) melting point | | 136 °C boiling point | | 260 °C density | | 1.464 g/cm^3

Units

Hydrophobicity and permeability properties

 | heme | L-threonine experimental LogP hydrophobicity | | -3.5 predicted LogP hydrophobicity | 0.29 | -3 experimental LogS | | -0.09 predicted LogS | -5.63 | 0.6
| heme | L-threonine experimental LogP hydrophobicity | | -3.5 predicted LogP hydrophobicity | 0.29 | -3 experimental LogS | | -0.09 predicted LogS | -5.63 | 0.6

Amino acid properties

 | L-threonine three-letter code | Thr one-letter code | T isoelectric point | 5.6 pK_a (α-COOH, (α-NH_3)^+) | 2.09 | 9.1 polarity | polar codons | ACU | ACC | ACA | ACG occurrence in human proteins | 5.77%
| L-threonine three-letter code | Thr one-letter code | T isoelectric point | 5.6 pK_a (α-COOH, (α-NH_3)^+) | 2.09 | 9.1 polarity | polar codons | ACU | ACC | ACA | ACG occurrence in human proteins | 5.77%

Thermodynamic properties

 | L-threonine critical temperature | 711 K (kelvins) critical pressure | 5.5 MPa (megapascals)
| L-threonine critical temperature | 711 K (kelvins) critical pressure | 5.5 MPa (megapascals)