Mitchell Deanne J, Butcher Neville J, Minchin Rodney F
School of Biomedical Sciences, University of Queensland, Australia.
Biochim Biophys Acta. 2011 Jan;1813(1):231-7. doi: 10.1016/j.bbamcr.2010.09.011. Epub 2010 Oct 12.
SULT4A1 is a cytosolic sulfotransferase that shares little homology with other human sulfotransferases but is highly conserved between species. It is found in neurons located in several regions of the brain. Recently, the stability of SULT4A1 was shown to be regulated by Pin1, a peptidyl-prolyl cis-trans isomerase implicated in several neurodegenerative diseases. Since Pin1 binds preferentially to phosphoproteins, these findings suggested that SULT4A1 is post-translationally modified. In this study, we show that the Thr(11) residue of SULT4A1, which is involved in Pin1 binding is phosphorylated. MEK inhibition was shown to abolish Pin1 mediated degradation of SULT4A1 while in vitro phosphorylation assays using alanine substitution mutants of SULT4A1 demonstrated phosphorylation of Thr(11) by ERK1. We also show that dephosphorylation was catalyzed by the protein phosphatase 2A. The PP2A regulatory subunit, Bβ was identified from a yeast-2-hybrid screen of human brain cDNA as a SULT4A1 interacting protein. This was further confirmed by GST pull-downs and immunoprecipitation. Other members of the B subunit (αδγ) did not interact with SULT4A1. Taken together, these studies indicate that SULT4A1 stability is regulated by post-translational modification that involves the ERK pathway and PP2A. The phosphorylation of SULT4A1 allows interaction with Pin1, which then promotes degradation of the sulfotransferase.
SULT4A1是一种胞质磺基转移酶,与其他人类磺基转移酶的同源性较低,但在物种间高度保守。它存在于大脑多个区域的神经元中。最近发现,SULT4A1的稳定性受Pin1调节,Pin1是一种与多种神经退行性疾病有关的肽基脯氨酰顺反异构酶。由于Pin1优先结合磷酸化蛋白,这些发现表明SULT4A1存在翻译后修饰。在本研究中,我们发现参与与Pin1结合的SULT4A1的苏氨酸(Thr)11残基被磷酸化。抑制MEK可消除Pin1介导的SULT4A1降解,而使用SULT4A1丙氨酸替代突变体进行的体外磷酸化试验表明ERK1可使Thr11磷酸化。我们还发现蛋白磷酸酶2A可催化去磷酸化。通过对人脑cDNA进行酵母双杂交筛选,鉴定出PP2A调节亚基Bβ是与SULT4A1相互作用的蛋白。GST下拉实验和免疫沉淀进一步证实了这一点。B亚基的其他成员(α、δ、γ)不与SULT4A1相互作用。综上所述,这些研究表明SULT4A1的稳定性受涉及ERK途径和PP2A的翻译后修饰调节。SULT4A1的磷酸化使其能够与Pin1相互作用,进而促进磺基转移酶的降解。