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Inositol trisphosphate
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===Chemical properties === Phosphate groups can exist in three different forms depending on a solution's [[pH]]. Phosphorus atoms can bind three oxygen atoms with single bonds and a fourth oxygen atom using a double/dative bond. The pH of the solution, and thus the form of the phosphate group determines its ability to bind to other molecules. The binding of phosphate groups to the inositol ring is accomplished by phosphor-ester binding (see [[phosphoric acids and phosphates]]). This bond involves combining a [[hydroxyl]] group from the inositol ring and a free phosphate group through a [[dehydration reaction]]. Considering that the average physiological pH is approximately 7.4, the main form of the phosphate groups bound to the inositol ring [[in vivo]] is PO<sub>4</sub><sup>2β</sup>. This gives IP<sub>3</sub> a net negative charge, which is important in allowing it to dock to its receptor, through binding of the phosphate groups to positively charged residues on the receptor. IP<sub>3</sub> has three [[hydrogen bond]] donors in the form of its three hydroxyl groups. The hydroxyl group on the 6th carbon atom in the inositol ring is also involved in IP<sub>3</sub> docking.<ref>{{cite journal|doi=10.1016/j.bbamcr.2004.09.016|title=Structural insights into the regulatory mechanism of IP3 receptor|year=2004|last1=Bosanac|first1=Ivan|last2=Michikawa|first2=Takayuki|last3=Mikoshiba|first3=Katsuhiko|last4=Ikura|first4=Mitsuhiko|journal=Biochimica et Biophysica Acta (BBA) - Molecular Cell Research|volume=1742|issue=1β3|pages=89β102|pmid=15590059|doi-access=}}</ref>
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