Literature DB >> 26422590

Human SAS-6 C-Terminus Nucleates and Promotes Microtubule Assembly in Vitro by Binding to Microtubules.

Hindol Gupta1, Binshad Badarudeen1, Athira George1, Geethu Emily Thomas1, K K Gireesh1, Tapas K Manna1.   

Abstract

Centrioles are essential components of the animal centrosome and play crucial roles in the formation of cilia and flagella. They are cylindrical structures composed of nine triplet microtubules organized around a central cartwheel. Recent studies have identified spindle assembly abnormal protein SAS-6 as a critical component necessary for formation of the cartwheel. However, the molecular details of how the cartwheel participates in centriolar microtubule assembly have not been clearly understood. In this report, we show that the C-terminal tail (residues 470-657) of human SAS-6, HsSAS-6 C, the region that has been shown to extend toward the centriolar wall where the microtubule triplets are organized, nucleated and induced microtubule polymerization in vitro. The N-terminus (residues 1-166) of HsSAS-6, the domain known to be involved in formation of the central hub of the cartwheel, did not, however, exert any effect on microtubule polymerization. HsSAS-6 C bound to the microtubules and localized along the lengths of the microtubules in vitro. Microtubule pull-down and coimmunoprecipitation (Co-IP) experiments with S-phase synchronized HeLa cell lysates showed that the endogenous HsSAS-6 coprecipitated with the microtubules, and it mediated interaction with tubulin. Isothermal calorimetry titration and size exclusion chromatography showed that HsSAS-6 C bound to the αβ-tubulin dimer in vitro. The results demonstrate that HsSAS-6 possesses an intrinsic microtubule assembly promoting activity and further implicate that its outer exposed C-terminal tail may play critical roles in microtubule assembly and stabilizing microtubule attachment with the centriolar cartwheel.

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Year:  2015        PMID: 26422590     DOI: 10.1021/acs.biochem.5b00978

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  4 in total

1.  The ubiquitin ligase FBXW7 targets the centriolar assembly protein HsSAS-6 for degradation and thereby regulates centriole duplication.

Authors:  Binshad Badarudeen; Ria Gupta; Sreeja V Nair; Aneesh Chandrasekharan; Tapas K Manna
Journal:  J Biol Chem       Date:  2020-02-21       Impact factor: 5.157

2.  Novel STIL Compound Heterozygous Mutations Cause Severe Fetal Microcephaly and Centriolar Lengthening.

Authors:  Francesca Cristofoli; Bart De Keersmaecker; Luc De Catte; Joris R Vermeesch; Hilde Van Esch
Journal:  Mol Syndromol       Date:  2017-09-27

Review 3.  Comprehensive review on the molecular genetics of autosomal recessive primary microcephaly (MCPH).

Authors:  Muhammad Naveed; Syeda Khushbakht Kazmi; Mariyam Amin; Zainab Asif; Ushna Islam; Kinza Shahid; Sana Tehreem
Journal:  Genet Res (Camb)       Date:  2018-08-08       Impact factor: 1.588

4.  Interaction between the Caenorhabditis elegans centriolar protein SAS-5 and microtubules facilitates organelle assembly.

Authors:  Sarah Bianchi; Kacper B Rogala; Nicola J Dynes; Manuel Hilbert; Sebastian A Leidel; Michel O Steinmetz; Pierre Gönczy; Ioannis Vakonakis
Journal:  Mol Biol Cell       Date:  2018-01-24       Impact factor: 4.138

  4 in total

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