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akaturk Akademik ölçüm

Makale detayı · 2009

Edgetic perturbation models of human inherited disorders

Dergi

Molecular Systems Biology

ISSN 1744-4292

YÖKSİS OpenAlex Açık erişim · gold SJR Q1 JCR Q1 Atıf 370 Üst %10 Yüzdelik 98.8% FWCI 9.45
Yıl
2009
Tür
article

Veri kaynağı ayrımı

  • YÖKSİS YÖKSİS makale kaydı
  • YÖKSİS dergi adı Molecular Systems Biology
  • Katalog eşleşmesi (ISSN) Molecular Systems Biology
  • OpenAlex OpenAlex zenginleştirmesi (özet, atıf, konular)

Özet

OpenAlex · İngilizce

Cellular functions are mediated through complex systems of macromolecules and metabolites linked through biochemical and physical interactions, represented in interactome models as 'nodes' and 'edges', respectively. Better understanding of genotype-to-phenotype relationships in human disease will require modeling of how disease-causing mutations affect systems or interactome properties. Here we investigate how perturbations of interactome networks may differ between complete loss of gene products ('node removal') and interaction-specific or edge-specific ('edgetic') alterations. Global computational analyses of approximately 50,000 known causative mutations in human Mendelian disorders revealed clear separations of mutations probably corresponding to those of node removal versus edgetic perturbations. Experimental characterization of mutant alleles in various disorders identified diverse edgetic interaction profiles of mutant proteins, which correlated with distinct structural properties of disease proteins and disease mechanisms. Edgetic perturbations seem to confer distinct functional consequences from node removal because a large fraction of cases in which a single gene is linked to multiple disorders can be modeled by distinguishing edgetic network perturbations. Edgetic network perturbation models might improve both the understanding of dissemination of disease alleles in human populations and the development of molecular therapeutic strategies.

Konular

Atıflar

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370 atıf

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Yazarlar

  1. Quan Zong
  2. Nicolas Simonis
  3. Li Qian Ru
  4. Benoit Charloteaux
  5. Fabien Heuze
  6. Niels Klitgord
  7. Stanley Tam
  8. Haiyuan Yu
  9. Kavitha Venkatesan
  10. Danny Mou
  11. Venus Swearingen
  12. MUHAMMED ALİ YILDIRIM KOÇ ÜNİVERSİTESİ
  13. Han Yan
  14. Amelie Dricot
  15. David Szeto
  16. Chenwei Lin
  17. Tong Hao
  18. Changyu Fan
  19. Stuart Milstein
  20. Denis Dupuy
  21. Robert Brasseur
  22. David E Hill
  23. Michael E Cusick
  24. Marc Vidal