Using iPALM to determine protein organisation in cardiac muscle Z-discs

Sarcomeres, the basic repeating unit of striated muscle, are joined together by crosslinked actin filaments found at the boundaries of muscle sarcomeres, termed Z-discs. Z-discs play a key role in cardiac signalling and disease, however, the arrangement and function of many of the proteins present in the Z-disc remain to be understood. Here, we determined the organisation of 3 key proteins, ZASP, ɑ-actinin-2 and the Z1Z2 epitope of titin, located within the Z-disc. We fluorescently labelled these proteins in cardiac myofibrils using Adhirons specific to each protein and used interferometric photoactivated localization microscopy (iPALM) to obtain the 3D position of these proteins to a high precision (<10nm in x,y,z). We then used PERPL (Pattern Extraction from Relative Positions of Localisations: available at https://github.com/oubino/z_disk/releases/tag/v0.0.3 ) to analyse patterns in the relative positions of the proteins and reveal their underlying organisation. This analysis revealed that ZASP and ɑ-actinin-2 have a similar repeating organisation, but that the organisation of Z1Z2 is different.

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Journal
PLoS Computational Biology
Published
2026-09-28
DOI
https://doi.org/10.1371/journal.pcbi.1014309
Primary Topic
Cardiomyopathy and Myosin Studies
Type
article
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Using iPALM to determine protein organisation in cardiac muscle Z-discs

Alistair Curd, Michelle Peckham, Heather L. Martin, Anna Ah-San Tang et al.
PLoS Computational Biology
Cardiomyopathy and Myosin Studies
article

Using iPALM to determine protein organisation in cardiac muscle Z-discs

Alistair Curd, Michelle Peckham, Heather L. Martin, Anna Ah-San Tang, Iain W. Manfield, Oliver Umney, Satya Khuon, Tarek Lewis, Jesse Arron, Harikrushnan Balasubramanian, Thembaninkosi Gaule
article en

Abstract

Sarcomeres, the basic repeating unit of striated muscle, are joined together by crosslinked actin filaments found at the boundaries of muscle sarcomeres, termed Z-discs. Z-discs play a key role in cardiac signalling and disease, however, the arrangement and function of many of the proteins present in the Z-disc remain to be understood. Here, we determined the organisation of 3 key proteins, ZASP, ɑ-actinin-2 and the Z1Z2 epitope of titin, located within the Z-disc. We fluorescently labelled these proteins in cardiac myofibrils using Adhirons specific to each protein and used interferometric photoactivated localization microscopy (iPALM) to obtain the 3D position of these proteins to a high precision (<10nm in x,y,z). We then used PERPL (Pattern Extraction from Relative Positions of Localisations: available at https://github.com/oubino/z_disk/releases/tag/v0.0.3 ) to analyse patterns in the relative positions of the proteins and reveal their underlying organisation. This analysis revealed that ZASP and ɑ-actinin-2 have a similar repeating organisation, but that the organisation of Z1Z2 is different.

PLoS Computational BiologyVol. 22(9)
University of Leeds (GB), Howard Hughes Medical Institute (US), Janelia Research Campus (US)
Openalex Percentile: Top 11%
Cardiomyopathy and Myosin Studies
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Using iPALM to determine protein organisation in cardiac muscle Z-discs — Alistair Curd, Michelle Peckham, et al. · PLoS Computational Biology (2026) | TGRS Research Map | TGRS