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Updated: Feb 5, 2026

Analysis of Apoptosis in Zebrafish Embryos by Whole-mount Immunofluorescence to Detect Activated Caspase 3
Published on: December 20, 2013
A structural investigation of NRZ mediated apoptosis regulation in zebrafish
Chathura D Suraweera1, Sofia Caria1, Michael Järvå1
1Department of Biochemistry and Genetics, La Trobe Institute for Molecular Science, La Trobe University, Melbourne, Victoria, 3086, Australia.
Abstract:
Bcl-2 family proteins play a crucial role in regulating apoptosis, a process critical for development, eliminating damaged or infected cells, host-pathogen interactions and in disease. Dysregulation of Bcl-2 proteins elicits an expansive cell survival mechanism promoting cell migration, invasion and metastasis. Through a network of intra-family protein-protein interactions Bcl-2 family members regulate the release of cell death factors from mitochondria. NRZ is a novel zebrafish pro-survival Bcl-2 orthologue resident on mitochondria and the endoplasmic reticulum (ER). However, the mechanism of NRZ apoptosis inhibition has not yet been clarified. Here we examined the interactions of NRZ with pro-apoptotic members of the Bcl-2 family using a combination of isothermal calorimetry and mutational analysis of NRZ. We show that NRZ binds almost all zebrafish pro-apoptotic proteins and displays a broad range of affinities. Furthermore, we define the structural basis for apoptosis inhibition of NRZ by solving the crystal structure of both apo-NRZ and a holo form bound to a peptide spanning the binding motif of the pro-apoptotic zBad, a BH3-only protein orthologous to mammalian Bad. The crystal structure of NRZ revealed that it adopts the conserved Bcl-2 like fold observed for other cellular pro-survival Bcl-2 proteins and employs the canonical ligand binding groove to bind Bad BH3 peptide. NRZ engagement of Bad BH3 involves the canonical ionic interaction between NRZ R86 and Bad D104 and an additional ionic interaction between NRZ D79 and Bad R100, and substitution of either NRZ R86 or D79 to Ala reduces the binding to Bad BH3 tenfold or more. Our findings provide a detailed mechanistic understanding for NRZ mediated anti-apoptotic activity in zebrafish by revealing binding to both Bad and Noxa, suggesting that NRZ is likely to occupy a unique mechanistic role in zebrafish apoptosis regulation by acting as a highly promiscuous pro-apoptotic Bcl-2 binder.
Insights
The novel zebrafish protein NRZ, a Bcl-2 family member, binds broadly to pro-apoptotic proteins, revealing its mechanism for inhibiting cell death. This promiscuous binding suggests a unique role in regulating apoptosis in zebrafish.
Area of Science:
- Molecular Biology
- Cell Biology
- Biochemistry
Background:
- Bcl-2 family proteins are key regulators of apoptosis, essential for development and disease.
- Dysregulation of Bcl-2 proteins contributes to cancer progression, including metastasis.
- NRZ is a zebrafish pro-survival Bcl-2 protein located on mitochondria and ER, whose mechanism of action is unclear.
Purpose of the Study:
- To elucidate the mechanism by which NRZ inhibits apoptosis.
- To investigate the interactions between NRZ and pro-apoptotic Bcl-2 family members.
- To determine the structural basis of NRZ's anti-apoptotic activity.
Main Methods:
- Isothermal titration calorimetry to assess binding affinities.
- Mutational analysis of NRZ to identify key binding residues.
- X-ray crystallography to determine the structures of apo-NRZ and NRZ bound to a zBad peptide.
Main Results:
- NRZ binds to most zebrafish pro-apoptotic proteins with varying affinities.
- The crystal structure of NRZ reveals a conserved Bcl-2 fold and a canonical binding groove.
- NRZ binds the zBad BH3 peptide via specific ionic interactions involving NRZ residues R86 and D79, crucial for high-affinity binding.
Conclusions:
- NRZ acts as a promiscuous binder of pro-apoptotic Bcl-2 proteins, including zBad and zNoxa.
- The structural and binding data provide a mechanistic understanding of NRZ's anti-apoptotic function in zebrafish.
- NRZ likely plays a significant and unique role in zebrafish apoptosis regulation.
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