Sprouty-2 is an important regulator of growth factor signalling and a tumour suppressor protein. The defining feature of this protein is a cysteine-rich domain (CRD) that contains twenty-six cysteine residues and is modified by S-acylation. In this study, we show that the CRD of sprouty-2 is differentially modified by S-acyltransferase enzymes. The high specificity/low activity zDHHC17 enzyme mediated restricted S-acylation of sprouty-2, and cysteine-265 and -268 were identified as key targets of this enzyme. In contrast, the low specificity/high activity zDHHC3 and zDHHC7 enzymes mediated more expansive modification of the sprouty-2 CRD. Nevertheless, S-acylation by all enzymes enhanced sprouty-2 expression, suggesting that S-acylation stabilises this protein. In addition, we identified two charged residues (aspartate-214 and lysine-223), present on opposite faces of a predicted α-helix in the CRD, which are essential for S-acylation of sprouty-2. Interestingly, mutations that perturbed S-acylation also led to a loss of plasma membrane localisation of sprouty-2 in PC12 cells. This study provides insight into the mechanisms and outcomes of sprouty-2 S-acylation, and highlights distinct patterns of S-acylation mediated by different classes of zDHHC enzymes.
Identification of key features required for efficient S-acylation and plasma membrane targeting of sprouty-2.
确定 sprouty-2 高效 S-酰化和质膜靶向所需的关键特征
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作者:Locatelli Carolina, Lemonidis Kimon, Salaun Christine, Tomkinson Nicholas C O, Chamberlain Luke H
| 期刊: | Journal of Cell Science | 影响因子: | 3.600 |
| 时间: | 2020 | 起止号: | 2020 Nov 5; 133(21):jcs249664 |
| doi: | 10.1242/jcs.249664 | ||
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