Bouley Renee A, Hinkovska-Galcheva Vania, Shayman James A, Tesmer John J G
Life Sciences Institute and Department of Pharmacology , University of Michigan , Ann Arbor , Michigan 48109 , United States.
Department of Internal Medicine, University of Michigan Medical School , University of Michigan , Ann Arbor , Michigan 48109 , United States.
Biochemistry. 2019 Apr 2;58(13):1709-1717. doi: 10.1021/acs.biochem.8b01124. Epub 2019 Mar 13.
Lysosomal phospholipase A (LPLA/PLA2G15) is a key enzyme involved in lipid homeostasis and is characterized by both phospholipase A2 and transacylase activity and by an acidic pH optimum. Divalent cations such as Ca and Mg have previously been shown to have little effect on the activity of LPLA, but the discovery of a novel crystal form of LPLA with Zn bound in the active site suggested a role for this divalent cation in regulating enzyme activity. In this complex, the cation directly coordinates the serine and histidine of the α/β-hydrolase triad and stabilizes a closed conformation. This closed conformation is characterized by an inward shift of the lid loop, which extends over the active site and effectively blocks access to one of its lipid acyl chain binding tracks. Therefore, we hypothesized that Zn would inhibit LPLA activity at a neutral but not acidic pH because histidine would be positively charged at lower pH. Indeed, Zn was found to inhibit the esterase activity of LPLA in a noncompetitive manner exclusively at a neutral pH (between 6.5 and 8.0). Because lysosomes are reservoirs of Zn in cells, the pH optimum of LPLA might allow it to catalyze acyl transfer unimpeded within the organelle. We conjecture that Zn inhibition of LPLA at higher pH maintains a lower activity of the esterase in environments where its activity is not typically required.
溶酶体磷脂酶A(LPLA/PLA2G15)是参与脂质稳态的关键酶,具有磷脂酶A2和转酰基酶活性,最适pH为酸性。先前已表明,Ca和Mg等二价阳离子对LPLA的活性影响很小,但在活性位点结合有Zn的LPLA新晶体形式的发现表明,这种二价阳离子在调节酶活性中发挥作用。在这种复合物中,阳离子直接与α/β-水解酶三联体的丝氨酸和组氨酸配位,并稳定封闭构象。这种封闭构象的特征是盖环向内移动,盖环延伸到活性位点上方,有效地阻断了对其脂质酰基链结合位点之一的 access。因此,我们推测Zn会在中性而非酸性pH下抑制LPLA活性,因为组氨酸在较低pH下会带正电。事实上,发现Zn仅在中性pH(6.5至8.0之间)以非竞争性方式抑制LPLA的酯酶活性。由于溶酶体是细胞中Zn的储存库,LPLA的最适pH可能使其在细胞器内不受阻碍地催化酰基转移。我们推测,在较高pH下Zn对LPLA的抑制作用在通常不需要其活性的环境中维持较低的酯酶活性。