7-Aminoaktinomicin D

7-Aminoaktinomicin D
Identifikacija
CAS registarski broj 7240-37-1 DaY
PubChem[1][2] 16218991
ChemSpider[3] 21326185 DaY
ChEBI 52304
Jmol-3D slike Slika 1
SMILES

CC(C)[C@H]1\N=C(\O)/[C@@H](\N=C(/O)\C2=C(N)C(=O)C(=C3Oc4c(C)c(N)cc(\C(=N\[C@H]5[C@@H](C)OC(=O)[C@H](C(C)C)N(C)C(=O)CN(C)C(=O)[C@@H]6CCCN6C(=O)[C@H](\N=C/5\O)C(C)C)\O)c4N=C23)C)[C@@H](C)OC(=O)[C@H](C(C)C)N(C)C(=O)CN(C)C(=O)[C@@H]7CCCN7C1=O

InChI

InChI=1S/C62H87N13O16/c1-26(2)42-59(85)74-21-17-19-36(74)57(83)70(13)24-38(76)72(15)48(28(5)6)61(87)89-32(11)44(55(81)66-42)68-53(79)34-23-35(63)30(9)51-46(34)65-47-40(41(64)50(78)31(10)52(47)91-51)54(80)69-45-33(12)90-62(88)49(29(7)8)73(16)39(77)25-71(14)58(84)37-20-18-22-75(37)60(86)43(27(3)4)67-56(45)82/h23,26-29,32-33,36-37,42-45,48-49H,17-22,24-25,63-64H2,1-16H3,(H,66,81)(H,67,82)(H,68,79)(H,69,80)/t32-,33-,36+,37+,42-,43-,44+,45+,48+,49+/m1/s1 DaY
Kod: YXHLJMWYDTXDHS-IRFLANFNSA-N DaY


InChI=1/C62H87N13O16/c1-26(2)42-59(85)74-21-17-19-36(74)57(83)70(13)24-38(76)72(15)48(28(5)6)61(87)89-32(11)44(55(81)66-42)68-53(79)34-23-35(63)30(9)51-46(34)65-47-40(41(64)50(78)31(10)52(47)91-51)54(80)69-45-33(12)90-62(88)49(29(7)8)73(16)39(77)25-71(14)58(84)37-20-18-22-75(37)60(86)43(27(3)4)67-56(45)82/h23,26-29,32-33,36-37,42-45,48-49H,17-22,24-25,63-64H2,1-16H3,(H,66,81)(H,67,82)(H,68,79)(H,69,80)/t32-,33-,36+,37+,42-,43-,44+,45+,48+,49+/m1/s1

Svojstva
Molekulska formula C62H87N13O16
Molarna masa 1270.43 g mol−1



Ukoliko nije drugačije napomenuto, podaci se odnose na standardno stanje (25 °C, 100 kPa) materijala

Infobox references

7-Aminoaktinomicin D je organsko jedinjenje, koje sadrži 62 atoma ugljenika i ima molekulsku masu od 1270,432 Da.

Osobine

Osobina Vrednost
Broj akceptora vodonika 23
Broj donora vodonika 6
Broj rotacionih veza 8
Particioni koeficijent[4] (ALogP) 2,3
Rastvorljivost[5] (logS, log(mol/L)) -11,4
Polarna površina[6] (PSA, Å2) 395,5

Reference

  1. Li Q, Cheng T, Wang Y, Bryant SH (2010). „PubChem as a public resource for drug discovery.”. Drug Discov Today 15 (23-24): 1052-7. DOI:10.1016/j.drudis.2010.10.003. PMID 20970519.  edit
  2. Evan E. Bolton, Yanli Wang, Paul A. Thiessen, Stephen H. Bryant (2008). „Chapter 12 PubChem: Integrated Platform of Small Molecules and Biological Activities”. Annual Reports in Computational Chemistry 4: 217-241. DOI:10.1016/S1574-1400(08)00012-1. 
  3. Hettne KM, Williams AJ, van Mulligen EM, Kleinjans J, Tkachenko V, Kors JA. (2010). „Automatic vs. manual curation of a multi-source chemical dictionary: the impact on text mining”. J Cheminform 2 (1): 3. DOI:10.1186/1758-2946-2-3. PMID 20331846.  edit
  4. Ghose, A.K., Viswanadhan V.N., and Wendoloski, J.J. (1998). „Prediction of Hydrophobic (Lipophilic) Properties of Small Organic Molecules Using Fragment Methods: An Analysis of AlogP and CLogP Methods”. J. Phys. Chem. A 102: 3762-3772. DOI:10.1021/jp980230o. 
  5. Tetko IV, Tanchuk VY, Kasheva TN, Villa AE. (2001). „Estimation of Aqueous Solubility of Chemical Compounds Using E-State Indices”. Chem Inf. Comput. Sci. 41: 1488-1493. DOI:10.1021/ci000392t. PMID 11749573. 
  6. Ertl P., Rohde B., Selzer P. (2000). „Fast calculation of molecular polar surface area as a sum of fragment based contributions and its application to the prediction of drug transport properties”. J. Med. Chem. 43: 3714-3717. DOI:10.1021/jm000942e. PMID 11020286. 

Literatura

  • Clayden Jonathan, Nick Greeves, Stuart Warren, Peter Wothers (2001). Organic chemistry. Oxford, Oxfordshire: Oxford University Press. ISBN 0-19-850346-6. 
  • Smith, Michael B.; March, Jerry (2007). Advanced Organic Chemistry: Reactions, Mechanisms, and Structure (6th izd.). New York: Wiley-Interscience. ISBN 0-471-72091-7. 
  • Katritzky A.R., Pozharskii A.F. (2000). Handbook of Heterocyclic Chemistry. Academic Press. ISBN 0080429882. 

Spoljašnje veze

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