4.3 Article

The N2A region of titin has a unique structural configuration

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JOURNAL OF GENERAL PHYSIOLOGY
卷 153, 期 7, 页码 -

出版社

ROCKEFELLER UNIV PRESS
DOI: 10.1085/jgp.202012766

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资金

  1. European Union Marie Sklodowska-Curie Actions Individual Fellowship (TTNPred) [753054]
  2. Leducq Foundation [TNE-13CVD04]
  3. European Union RISE-H2020 Muscle relief
  4. National Institutes of Health [HL128457]
  5. Swedish Hjart-Lungfonden [20180199]
  6. Marianne and Marcus Wallenberg Foundation
  7. Swedish Research Council [2016/82]
  8. Swedish Society for Medical Research [S150086]
  9. European Research Council [804418]
  10. Biotechnology and Biological Sciences Research Council [BB/M00676X/1]
  11. Marie Curie Actions (MSCA) [753054] Funding Source: Marie Curie Actions (MSCA)
  12. Swedish Heart-Lung Foundation [20180199] Funding Source: Swedish Heart-Lung Foundation
  13. European Research Council (ERC) [804418] Funding Source: European Research Council (ERC)
  14. BBSRC [BB/M00676X/1] Funding Source: UKRI

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The N2A segment of titin is a key signaling hub in the sarcomeric I-band, recruiting various signaling factors and processing enzymes. While it has been suggested to play a role in force production through association with actin, the molecular basis for these functions within the titin chain remains poorly understood. N2A has a unique architecture that supports its selective recruitment of binding partners in signaling, but its mechanical role through interaction with F-actin remains to be validated.
The N2A segment of titin is a main signaling hub in the sarcomeric I-band that recruits various signaling factors and processing enzymes. It has also been proposed to play a role in force production through its Ca2'-regulated association with actin. However, the molecular basis by which N2A performs these functions selectively within the repetitive and extensive titin chain remains poorly understood. Here, we analyze the structure of N2A components and their association with F-actin. Specifically, we characterized the structure of its Ig domains by elucidating the atomic structure of the I81-I83 tandem using x-ray crystallography and computing a homology model for I80. Structural data revealed these domains to present heterogeneous and divergent Ig folds, where I81 and I83 have unique loop structures. Notably, the I81-I83 tandem has a distinct rotational chain arrangement that confers it a unique multi-domain topography. However, we could not identify specific Ca2'-binding sites in these Ig domains, nor evidence of the association of titin N2A components with F-actin in transfected C2C12 myoblasts or C2C12-derived myotubes. In addition, F-actin cosedimentation assays failed to reveal binding to N2A. We conclude that N2A has a unique architecture that predictably supports its selective recruitment of binding partners in signaling, but that its mechanical role through interaction with F-actin awaits validation.

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