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Novel functional features of the Lis-H domain: Role in protein dimerization, half-life and cellular localization

  • Gabi Gerlitz
  • , Enbal Darhin
  • , Giovanna Giorgio
  • , Brunella Franco
  • , Orly Reiner

نتاج البحث: نشر في مجلةمقالةمراجعة النظراء

79 اقتباسات (Scopus)

ملخص

The presence of a conserved protein motif usually implies common functional features. Here, we focused on the LisH (LIS1 homology) domain, which is found in multiple proteins, and have focused on three involved in human genetic diseases; LIS1, Transducin β-like 1X (TBL1) and Oral-facial-digital type 1 (OFD1). The recently solved structure of the LisH domain in the N-terminal region of LIS1 depicted it as a novel dimerization motif. Our findings indicated that the LisH domain of both LIS1 and TBL1 is essential for in vitro oligomerization. Furthermore, our study disclosed novel in vivo features of the LisH motif. Mutations in conserved LisH amino acids significantly reduced both the protein half-life of LIS1, TBL1, and OFD1, and dramatically affected specific intracellular localizations of these proteins. LIS1 mutated in the LisH domain induced its localization to the actin filaments. TBL1 mutated in the LisH domain was not imported into the nucleus. Mutations in OFD1 modified its localization to the Golgi apparatus and in some cases also to the nucleus. In summary, the LisH domain may participate in protein dimerization, affect protein half-life, and may influence specific cellular localizations. Our results allow the prediction that mutations within the LisH motif are likely to result in pathogenic consequences in genes associated with genetic diseases.

اللغة الأصليةالإنجليزيّة
الصفحات (من إلى)1632-1640
عدد الصفحات9
دوريةCell Cycle
مستوى الصوت4
رقم الإصدار11
المعرِّفات الرقمية للأشياء
حالة النشرنُشِر - نوفمبر 2005
منشور خارجيًانعم

بصمة

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