Hawash Ibrahim Y, Hu X Eric, Adal Adiam, Cassady John M, Geahlen Robert L, Harrison Marietta L
Department of Medicinal Chemistry and Molecular Pharmacology, Purdue University, West Lafayette, IN 47907, USA.
Biochim Biophys Acta. 2002 Apr 3;1589(2):140-50. doi: 10.1016/s0167-4889(02)00165-9.
Palmitoylation of cysteines 3 and 5 is necessary for targeting Lck to lipid rafts and is needed for Lck function in T cell receptor (TCR) signaling. Point mutations of cysteines 3 and 5 result in a form of Lck that fails to associate with the plasma membrane, which limits the usefulness of this genetic approach to address the role of palmitoylation in the distribution of Lck within the plasma membrane. To circumvent this problem, we sought to identify a palmitic acid analogue that would enable plasma membrane association of Lck, but not facilitate its localization within lipid rafts. Here we examined the effects of the heteroatom-substituted analogue of palmitic acid, 13-oxypalmitic acid (13-OP), on Lck subcellular localization and function. 13-OP is similar in chain length to palmitic acid, but possesses reduced hydrophobicity. We found that treatment of cells with 13-OP inhibited incorporation of omega-[(125)I]iodopalmitate into Lck. 13-OP inhibited localization of Lck to lipid rafts without altering its membrane localization. Consistent with the dissociation of Lck from rafts, treatment with 13-OP abolished Lck association with the GPI-anchored protein, CD48, but not the transmembrane glycoprotein CD4. Jurkat T cells treated with 13-OP showed marked reduction in tyrosine phosphorylation and activation of mitogen-activated protein kinase upon TCR stimulation. In conclusion, the less hydrophobic analogue of palmitate, 13-OP, alters the normal acylation of Lck that provides Lck with the necessary hydrophobicity and tight packing order required for inclusion in lipid rafts.
半胱氨酸3和5的棕榈酰化是Lck靶向脂筏所必需的,也是T细胞受体(TCR)信号传导中Lck发挥功能所必需的。半胱氨酸3和5的点突变导致一种Lck形式,该形式无法与质膜结合,这限制了这种基因方法在解决棕榈酰化在Lck于质膜内分布中的作用方面的实用性。为了规避这个问题,我们试图鉴定一种棕榈酸类似物,它能够使Lck与质膜结合,但不会促进其在脂筏内的定位。在这里,我们研究了棕榈酸的杂原子取代类似物13-氧代棕榈酸(13-OP)对Lck亚细胞定位和功能的影响。13-OP的链长与棕榈酸相似,但疏水性降低。我们发现用13-OP处理细胞会抑制ω-[(125)I]碘棕榈酸盐掺入Lck。13-OP抑制Lck向脂筏的定位,而不改变其膜定位。与Lck从脂筏解离一致,用13-OP处理消除了Lck与糖基磷脂酰肌醇(GPI)锚定蛋白CD48的结合,但不影响其与跨膜糖蛋白CD4的结合。用13-OP处理的Jurkat T细胞在TCR刺激后酪氨酸磷酸化和丝裂原活化蛋白激酶的激活显著降低。总之,疏水性较低的棕榈酸类似物13-OP改变了Lck的正常酰化,而这种酰化赋予Lck包含在脂筏中所需的必要疏水性和紧密堆积顺序。