Details
Zusammenfassung: <jats:p>Previously, several studies have demonstrated that autophosphorylation of the C‐terminal tyrosine residues (Tyr<jats:sup>1316</jats:sup> and Tyr<jats:sup>1322</jats:sup>) affects the signaling properties of the insulin receptor in vivo. To assess the biochemical consequences of the C‐terminal phosphorylation in vitro, we have constructed, purified and characterized 45 kDa soluble insulin receptor kinase domains (IRKD), either with (IRKD) or without (IRKD‐Y2F) the two C‐terminal tyrosine phosphorylation sites, respectively. According to HPLC phosphopeptide mapping, autophosphorylation of the three tyrosines in the activation loop of the IRKD‐Y2F kinase (Tyr<jats:sup>1146</jats:sup>, Tyr<jats:sup>1150</jats:sup>, and Tyr<jats:sup>1151</jats:sup>) was not affected by the mutation. In addition, the Y2F mutation did not significantly change the <jats:italic>K</jats:italic> <jats:sub>m</jats:sub> values for exogenous substrates. However, the mutation in IRKD‐Y2F resulted in a decrease in the maximum velocities of the phosphotransferase reaction in substrate phosphorylation reactions. Moreover, the exchange of the tyrosines in IRKD‐Y2F led to an increase in the apparent <jats:italic>K</jats:italic> <jats:sub>m</jats:sub> values for ATP, suggesting a cross‐talk of the C‐terminus and the catalytic domain of the enzyme. In addition, as judged by size exclusion chromatography, conformational changes of the enzyme following autophosphorylation were abolished by the removal of the two C‐terminal tyrosines. These data suggest a regulatory role of the two C‐terminal phosphorylation sites in the phosphotransferase activity of the insulin receptor.</jats:p>
Umfang: 67-71
ISSN: 0014-5793
1873-3468
DOI: 10.1016/s0014-5793(00)01879-2