Institute for Integrated Cell-Material Sciences (WPI-iCeMS), Kyoto University, Yoshida-Honmachi, Sakyoku, Kyoto, 606-8501, Japan.
Graduate School of Biostudies, Kyoto University, Konoe-cho, Yoshida, Sakyoku, Kyoto, 606-8501, Japan.
Nat Commun. 2023 Sep 11;14(1):5592. doi: 10.1038/s41467-023-40934-2.
The "eat me" signal, phosphatidylserine is exposed on the surface of dying cells by phospholipid scrambling. Previously, we showed that the Xkr family protein Xkr4 is activated by caspase-mediated cleavage and binding of the XRCC4 fragment. Here, we show that extracellular calcium is an additional factor needed to activate Xkr4. The constitutively active mutant of Xkr4 is found to induce phospholipid scrambling in an extracellular, but not intracellular, calcium-dependent manner. Importantly, other Xkr family members also require extracellular calcium for activation. Alanine scanning shows that D123 and D127 of TM1 and E310 of TM3 coordinate calcium binding. Moreover, lysine scanning demonstrates that the E310K mutation-mediated salt bridge between TM1 and TM3 bypasses the requirement of calcium. Cysteine scanning proves that disulfide bond formation between TM1 and TM3 also activates phospholipid scrambling without calcium. Collectively, this study shows that extracellular calcium functions as a molecular glue for TM1 and TM3 of Xkr proteins for activation, thus demonstrating a regulatory mechanism for multi-transmembrane region-containing proteins.
“吃我”信号,磷脂酰丝氨酸通过磷脂 scrambling 暴露在垂死细胞的表面。先前,我们表明 Xkr 家族蛋白 Xkr4 通过半胱天冬酶介导的切割和 XRCC4 片段的结合而被激活。在这里,我们表明细胞外钙是激活 Xkr4 所必需的另一个因素。发现组成型激活的 Xkr4 突变体以细胞外但不依赖细胞内钙的方式诱导磷脂 scrambling。重要的是,其他 Xkr 家族成员也需要细胞外钙才能被激活。丙氨酸扫描表明 TM1 的 D123 和 D127 以及 TM3 的 E310 协调钙结合。此外,赖氨酸扫描表明 TM1 和 TM3 之间的 E310K 突变介导的盐桥绕过了钙的要求。半胱氨酸扫描证明 TM1 和 TM3 之间的二硫键形成也可以在没有钙的情况下激活磷脂 scrambling。总之,这项研究表明细胞外钙作为 Xkr 蛋白的 TM1 和 TM3 的分子胶用于激活,从而证明了含有多个跨膜区域的蛋白质的调节机制。