<?xml version="1.0" encoding="UTF-8"?>
<compound>
  <id type="integer">4415</id>
  <title>T3D4361</title>
  <common-name>Glycogen</common-name>
  <description>Glycogen is a highly-branched polymer of about 30,000 glucose residues and has a molecular weight between 106 and 107 daltons (4.8 million approx.). Most of Glc units are linked by alpha-1,4 glycosidic bonds, approximately 1 in 12 Glc residues also makes -1,6 glycosidic bond with a second Glc which results in the creation of a branch. Glycogen only has one reducing end and a large number of non-reducing ends with a free hydroxyl group at carbon 4. The glycogen granules contain both glycogen and the enzymes of glycogen synthesis (glycogenesis) and degradation (glycogenolysis). The enzymes are nested between the outer branches of the glycogen molecules and act on the non-reducing ends. Therefore, the many non-reducing end-branches of glycogen facilitate its rapid synthesis and breakdown. In hypoglycemia caused by excessive insulin, liver glycogen levels are high, but the high insulin level prevents the glycogenolysis necessary to maintain normal blood sugar levels. Glucagon is a common treatment for this type of hypoglycemia. Glycogen is a polysaccharide that is the principal storage form of glucose (Glc) in animal and human cells. Glycogen is found in the form of granules in the cytosol in many cell types. Hepatocytes (liver cells) have the highest concentration of it - up to 8% of the fresh weight in well fed state, or 100 to 120 g in an adult - giving liver a distinctive, 'starchy taste'. In the muscles, glycogen is found in a much lower concentration (1% of the muscle mass), but the total amount exceeds that in liver. Small amounts of glycogen are found in the kidneys, and even smaller amounts in certain glial cells in the brain and white blood cells.</description>
  <cas>9005-79-2</cas>
  <pubchem-id>439177</pubchem-id>
  <chemical-formula>C24H42O21</chemical-formula>
  <weight nil="true"/>
  <appearance>White powder.</appearance>
  <melting-point>270 - 280°C</melting-point>
  <boiling-point></boiling-point>
  <density nil="true"/>
  <solubility></solubility>
  <specific-gravity nil="true"/>
  <flash-point nil="true"/>
  <vapour-pressure nil="true"/>
  <route-of-exposure nil="true"/>
  <target nil="true"/>
  <mechanism-of-toxicity nil="true"/>
  <metabolism nil="true"/>
  <toxicity nil="true"/>
  <lethaldose nil="true"/>
  <carcinogenicity>No indication of carcinogenicity to humans (not listed by IARC).</carcinogenicity>
  <use-source>This is an endogenously produced metabolite found in the human body. It is used in metabolic reactions, catabolic reactions or waste generation.</use-source>
  <min-risk-level nil="true"/>
  <health-effects nil="true"/>
  <symptoms nil="true"/>
  <treatment nil="true"/>
  <created-at type="dateTime">2014-08-29T06:34:37Z</created-at>
  <updated-at type="dateTime">2026-05-20T17:16:59Z</updated-at>
  <interacting-proteins nil="true"/>
  <wikipedia>Glycogen</wikipedia>
  <uniprot-id nil="true"/>
  <kegg-compound-id>C00182</kegg-compound-id>
  <omim-id nil="true"/>
  <chebi-id>28087</chebi-id>
  <biocyc-id>CPD0-971</biocyc-id>
  <ctd-id nil="true"/>
  <stitch-id nil="true"/>
  <drugbank-id nil="true"/>
  <pdb-id nil="true"/>
  <actor-id nil="true"/>
  <organism nil="true"/>
  <export type="boolean">true</export>
  <metabolizing-proteins nil="true"/>
  <transporting-proteins nil="true"/>
  <moldb-smiles>OC[C@H]1O[C@H](OC[C@H]2O[C@H](O[C@H]3[C@H](O)[C@@H](O)[C@@H](O)O[C@@H]3CO)[C@H](O)[C@@H](O)[C@@H]2O[C@H]2O[C@H](CO)[C@@H](O)[C@H](O)[C@H]2O)[C@H](O)[C@@H](O)[C@@H]1O</moldb-smiles>
  <moldb-formula>C24H42O21</moldb-formula>
  <moldb-inchi>InChI=1S/C24H42O21/c25-1-5-9(28)11(30)16(35)22(41-5)39-4-8-20(45-23-17(36)12(31)10(29)6(2-26)42-23)14(33)18(37)24(43-8)44-19-7(3-27)40-21(38)15(34)13(19)32/h5-38H,1-4H2/t5-,6-,7-,8-,9-,10-,11+,12+,13-,14-,15-,16-,17-,18-,19-,20-,21+,22+,23-,24-/m1/s1</moldb-inchi>
  <moldb-inchikey>BYSGBSNPRWKUQH-UJDJLXLFSA-N</moldb-inchikey>
  <moldb-average-mass type="decimal">666.5777</moldb-average-mass>
  <moldb-mono-mass type="decimal">666.221858406</moldb-mono-mass>
  <origin>Endogenous</origin>
  <state>Solid</state>
  <logp nil="true"/>
  <hmdb-id>HMDB00757</hmdb-id>
  <chembl-id nil="true"/>
  <chemspider-id>388322</chemspider-id>
  <structure-image-file-name nil="true"/>
  <structure-image-content-type nil="true"/>
  <structure-image-file-size type="integer" nil="true"/>
  <structure-image-updated-at type="dateTime" nil="true"/>
  <biodb-id nil="true"/>
  <synthesis-reference>Parodi A J; Krisman C R; Mordoh J  In vitro synthesis of particulate glycogen from uridine diphosphate glucose. II. Some studies on the growth process.    Archives of biochemistry and biophysics  (1970),  141(1),  219-27. </synthesis-reference>
  <structure-image-caption nil="true"/>
  <chemdb-id>CHEM003321</chemdb-id>
  <dsstox-id>DTXSID3093812</dsstox-id>
  <toxcast-id nil="true"/>
  <stoff-ident-origin nil="true"/>
  <stoff-ident-id nil="true"/>
  <susdat-id>NS00013711</susdat-id>
  <iupac nil="true"/>
  <moldb-polar-surface-area>347.83000000000004</moldb-polar-surface-area>
  <moldb-refractivity>133.16330000000002</moldb-refractivity>
  <moldb-polarizability>61.38637800234001</moldb-polarizability>
  <moldb-rotatable-bond-count>10</moldb-rotatable-bond-count>
  <moldb-acceptor-count>21</moldb-acceptor-count>
  <moldb-donor-count>14</moldb-donor-count>
  <moldb-pka-strongest-acidic>11.191977452335088</moldb-pka-strongest-acidic>
  <moldb-pka-strongest-basic>-3.6786216252270156</moldb-pka-strongest-basic>
  <moldb-physiological-charge>0</moldb-physiological-charge>
  <moldb-number-of-rings>4</moldb-number-of-rings>
  <moldb-alogps-logp>-2.67</moldb-alogps-logp>
  <moldb-alogps-logs>-0.29</moldb-alogps-logs>
  <moldb-alogps-solubility>3.43e+02 g/l</moldb-alogps-solubility>
</compound>
