Expression of the SEPT9_i4 isoform confers resistance to microtubule-interacting drugs


Autoria(s): McDade, S.S.; Chacko, A.D.; Chanduloy, S.; Church, S.W.; Kennedy, R.; Price, J.; Hall, P.A.; Russell, S.E.
Data(s)

01/04/2012

Resumo

<p>BACKGROUND: The evolutionarily conserved septin family of genes encode GTP binding proteins involved in a variety of cellular functions including cytokinesis, apoptosis, membrane dynamics and vesicle trafficking. Septin proteins can form hetero-oligomeric complexes and interact with other proteins including actin and tubulin. The human SEPT9 gene on chromosome 17q25.3 has a complex genomic architecture with 18 different transcripts that can encode 15 distinct polypeptides. Two distinct transcripts with unique 5' ends (SEPT9_v4 and SEPT9_v4*) encode the same protein. In tumours the ratio of these transcripts changes with elevated levels of SEPT9_v4* mRNA, a transcript that is translated with enhanced efficiency leading to increased SEPT9_i4 protein.</p><p>METHODS: We have examined the effect of over-expression of SEPT9_i4 on the dynamics of microtubule polymer mass in cultured cells.</p><p>RESULTS: We show that the microtubule network in SEPT9_i4 over-expressing cells resists disruption by paclitaxel or cold incubation but also repolymerises tubulin more slowly after microtubule depolymerisation. Finally we show that SEPT9_i4 over-expressing cells have enhanced survival in the presence of clinically relevant microtubule acting drugs but not after treatment with DNAinteracting agents.</p><p>CONCLUSIONS: Given that SEPT9 over-expression is seen in diverse tumours and in particular ovarian and breast cancer, such data indicate that SEPT9_v4 expression may be clinically relevant and contribute to some forms of drug resistance.</p>

Identificador

http://pure.qub.ac.uk/portal/en/publications/expression-of-the-sept9i4-isoform-confers-resistance-to-microtubuleinteracting-drugs(f31c246b-a145-4990-845b-347928f5de78).html

http://dx.doi.org/10.1007/s13402-011-0066-0

Idioma(s)

eng

Direitos

info:eu-repo/semantics/restrictedAccess

Fonte

McDade , S S , Chacko , A D , Chanduloy , S , Church , S W , Kennedy , R , Price , J , Hall , P A & Russell , S E 2012 , ' Expression of the SEPT9_i4 isoform confers resistance to microtubule-interacting drugs ' Cellular Oncology , vol 35 , no. 2 , pp. 85-93 . DOI: 10.1007/s13402-011-0066-0

Palavras-Chave #/dk/atira/pure/subjectarea/asjc/2700 #Medicine(all)
Tipo

article