Department of Pharmacology, University of Oxford, Mansfield Road, Oxford OX1 3QT, UK
J Cell Sci. 2021 Jan 27;134(2):jcs248658. doi: 10.1242/jcs.248658.
Pharmacological manipulation of lysosome membrane integrity or ionic movements is a key strategy for probing lysosomal involvement in cellular processes. However, we have found an unexpected inhibition of store-operated Ca entry (SOCE) by these agents. Dipeptides [glycyl-L-phenylalanine 2-naphthylamide (GPN) and L-leucyl-L-leucine methyl ester] that are inducers of lysosomal membrane permeabilization (LMP) uncoupled endoplasmic reticulum Ca-store depletion from SOCE by interfering with Stim1 oligomerization and/or Stim1 activation of Orai. Similarly, the K/H ionophore, nigericin, that rapidly elevates lysosomal pH, also inhibited SOCE in a Stim1-dependent manner. In contrast, other strategies for manipulating lysosomes (bafilomycin A1, lysosomal re-positioning) had no effect upon SOCE. Finally, the effects of GPN on SOCE and Stim1 was reversed by a dynamin inhibitor, dynasore. Our data show that lysosomal agents not only release Ca from stores but also uncouple this release from the normal recruitment of Ca influx.
药理学操纵溶酶体膜完整性或离子运动是探究溶酶体参与细胞过程的关键策略。然而,我们发现这些试剂出乎意料地抑制了储存操作的钙内流(SOCE)。二肽[甘氨酰-L-苯丙氨酸 2-萘酰胺(GPN)和 L-亮氨酰-L-亮氨酸甲酯]是溶酶体膜通透性(LMP)的诱导剂,通过干扰 Stim1 寡聚化和/或 Stim1 对 Orai 的激活,将内质网钙库耗竭与 SOCE 解偶联。同样,快速升高溶酶体 pH 的 K/H 离子载体 Nigericin 也以 Stim1 依赖性方式抑制 SOCE。相比之下,其他操纵溶酶体的策略(巴弗洛霉素 A1、溶酶体重新定位)对 SOCE 没有影响。最后,GPN 对 SOCE 和 Stim1 的作用被 dynamin 抑制剂 dynasore 逆转。我们的数据表明,溶酶体试剂不仅从储存库中释放 Ca,而且还将这种释放与 Ca 内流的正常募集解偶联。