Lloyd James R, Biasutto Antonio, Dürr Katharina L, Jazayeri Ali, Hopper Jonathan T S, Oldham Neil J
School of Chemistry, University of Nottingham, University Park, Nottingham NG7 2RD, U.K.
OMass Therapeutics, Schrodinger Building, Oxford Science Park, Oxford OX4 4GE, U.K.
JACS Au. 2023 Jun 23;3(7):2025-2035. doi: 10.1021/jacsau.3c00236. eCollection 2023 Jul 24.
Carbene footprinting is a recently developed mass spectrometry-based chemical labeling technique that probes protein interactions and conformation. Here, we use the methodology to investigate binding interactions between the protease human Caspase-1 (C285A) and full-length human Gasdermin D (hGSDMD), which are important in inflammatory cell death. GSDMD is cleaved by Caspase-1, releasing its N-terminal domain which oligomerizes in the membrane to form large pores, resulting in lytic cell death. Regions of reduced carbene labeling (masking), caused by protein binding, were observed for each partner in the presence of the other and were consistent with hCaspase-1 exosite and active-site interactions. Most notably, the results showed direct occupancy of hCaspase-1 (C285A) active-site by hGSDMD for the first time. Differential carbene labeling of full-length hGSDMD and the pore-forming N-terminal domain assembled in liposomes showed masking of the latter, consistent with oligomeric assembly and insertion into the lipid bilayer. Interactions between Caspase-1 and the specific inhibitor VRT-043198 were also studied by this approach. In wild-type hCaspase-1, VRT-043198 modifies the active-site Cys285 through the formation of a S,O-hemiacetal. Here, we showed by carbene labeling that this inhibitor can noncovalently occupy the active site of a C285A mutant. These findings add considerably to our knowledge of the hCaspase-1-hGSDMD system.
卡宾足迹法是一种最近开发的基于质谱的化学标记技术,用于探测蛋白质的相互作用和构象。在此,我们使用该方法研究蛋白酶人半胱天冬酶-1(C285A)与全长人Gasdermin D(hGSDMD)之间的结合相互作用,这在炎性细胞死亡中很重要。GSDMD被半胱天冬酶-1切割,释放出其N端结构域,该结构域在膜中寡聚形成大孔,导致细胞溶解性死亡。在存在对方的情况下,观察到每个相互作用伙伴因蛋白质结合导致的卡宾标记减少区域(掩盖),这与h半胱天冬酶-1的外部位点和活性位点相互作用一致。最值得注意的是,结果首次显示hGSDMD直接占据了h半胱天冬酶-1(C285A)的活性位点。全长hGSDMD和组装在脂质体中的成孔N端结构域的差异卡宾标记显示后者被掩盖,这与寡聚组装和插入脂质双层一致。还通过该方法研究了半胱天冬酶-1与特异性抑制剂VRT-043198之间的相互作用。在野生型h半胱天冬酶-1中,VRT-043198通过形成S,O-半缩醛修饰活性位点的半胱氨酸285。在此,我们通过卡宾标记表明该抑制剂可以非共价占据C285A突变体的活性位点。这些发现大大增加了我们对h半胱天冬酶-1-hGSDMD系统的了解。