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Pablo Fuentes-Prior

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Review Open access Jul 2026

On the structure and function of granzymes, the deadly squad of cytotoxic lymphocytes

Abstract Granzymes are a family of trypsin-like serine proteinases (TLSP) produced by cytotoxic T lymphocytes (CTLs) and natural killer (NK) cells. They play critical roles in immune defense by inducing diverse forms of programmed cell death (e.g., apoptosis, pyroptosis, and necroptosis) in infected or abnormal cells. Here, we review current information on the structural mechanisms underlying the activation, substrate specificity, and inhibition of the five human granzymes (GzmA, GzmB, GzmH, GzmK, and GzmM). We highlight how specific variations of the canonical trypsin fold allow these five proteinases to display entirely distinct substrate specificities. We emphasize the role of allosteric mechanisms, such as exosites and dimerization, in expanding their substrate recognition profiles far beyond simple P1 cleavage site requirements. We discuss the rapidly growing evidence on the contribution of dysregulated granzyme activity to various inflammatory and autoimmune diseases. Finally, we explore emerging therapeutic strategies targeting granzymes, aiming to either enhance their beneficial cytotoxic effects (e.g., in cancer immunotherapy and infection) or inhibit their pathological roles in chronic inflammation and autoimmunity. Despite significant progress, open questions remain regarding the full spectrum of physiological granzyme substrates, their precise synergistic actions in vivo, and the translational challenges of applying in vitro findings to complex clinical contexts.

José Luis Gardeazábal-Torbado, E. Estébanez-Perpiñá, Pablo Fuentes-Prior · 0 citations
#protein folding Review Open access Aug 2026

Structural basis for the procoagulant activity of Staphylococcus aureus staphylocoagulase

3D models of the C-terminal SC region suggest that the major C-terminal domain of SC folds into a single-layer β-sheet structurally similar to the membrane occupation and recognition nexus (MORN) family of tandem repeats, which is critical for understanding SC-mediated fibrin generation.

Pablo Fuentes-Prior, A. Maddur, Peter Panizzi et al. · 0 citations