Hydrogen peroxide prolongs mitotic arrest in a dose dependent manner and independently of the spindle assembly checkpoint activity in saccharomyces cerevisiae

Oxidative stress and chromosome missegregation are important factors that are linked to aneuploidy. A major reason for chromosome missegragation is the inappropriate activity of the spindle assembly checkpoint (SAC), a conserved surveillance mechanism that monitors the state of kinetochore-microtubule attachments to ensure equal chromosome segregation in mitosis. SAC-activation induces a prolonged mitotic arrest. Mitosis is considered the most vulnerable cell cycle phase to several external signals, therefore increasing the time cells spent in this phase via mitotic arrest induction by SAC-activating agents is favorable for cancer therapy. Cancer cells also display elevated oxidative stress due to abnormally high production of reactive oxygen species (ROS). However, the effect of increased oxidative stress on the duration of mitotic arrest remains largely unknown. In this study, we investigated the effect of H 2 O 2 -induced oxidative stress on the mitotic arrest induced by a SAC-activating agent (nocodazole) in Saccharomyces cerevisiae. Our data suggest that oxidative stress prolongs SAC-activation induced mitotic arrest in a dose dependent manner. We, in addition, investigated the effect of H 2 O 2 treatment on the mitotic arrest induced independently of SAC-activation by using a conditional mutant (cdc23) and showed that the effect of H 2 O 2 -induced oxidative stress on mitotic arrest is independent of the SAC activity. © 2017 Akademiai Kiado Rt. All rights reserved.

Dergi Adı Acta Biologica Hungarica
Cild 68
Dergi Sayısı 4
Sayfalar 477 - 489
Yayın Tarihi 2017
Eser Adı
[dc.title]
Hydrogen peroxide prolongs mitotic arrest in a dose dependent manner and independently of the spindle assembly checkpoint activity in saccharomyces cerevisiae
Yazar
[dc.contributor.author]
Atalay, P.B.
Yazar
[dc.contributor.author]
Asci, O.
Yazar
[dc.contributor.author]
Kaya, F.O.
Yazar
[dc.contributor.author]
Tuna, B.G.
Yayıncı
[dc.publisher]
Akademiai Kiado Rt.
Yayın Türü
[dc.type]
article
Özet
[dc.description.abstract]
Oxidative stress and chromosome missegregation are important factors that are linked to aneuploidy. A major reason for chromosome missegragation is the inappropriate activity of the spindle assembly checkpoint (SAC), a conserved surveillance mechanism that monitors the state of kinetochore-microtubule attachments to ensure equal chromosome segregation in mitosis. SAC-activation induces a prolonged mitotic arrest. Mitosis is considered the most vulnerable cell cycle phase to several external signals, therefore increasing the time cells spent in this phase via mitotic arrest induction by SAC-activating agents is favorable for cancer therapy. Cancer cells also display elevated oxidative stress due to abnormally high production of reactive oxygen species (ROS). However, the effect of increased oxidative stress on the duration of mitotic arrest remains largely unknown. In this study, we investigated the effect of H 2 O 2 -induced oxidative stress on the mitotic arrest induced by a SAC-activating agent (nocodazole) in Saccharomyces cerevisiae. Our data suggest that oxidative stress prolongs SAC-activation induced mitotic arrest in a dose dependent manner. We, in addition, investigated the effect of H 2 O 2 treatment on the mitotic arrest induced independently of SAC-activation by using a conditional mutant (cdc23) and showed that the effect of H 2 O 2 -induced oxidative stress on mitotic arrest is independent of the SAC activity. © 2017 Akademiai Kiado Rt. All rights reserved.
Kayıt Giriş Tarihi
[dc.date.accessioned]
2020-03-17
Yayın Tarihi
[dc.date.issued]
2017
Açık Erişim Tarihi
[dc.date.available]
2020-03-17
Dil
[dc.language.iso]
eng
Konu Başlıkları
[dc.subject]
Cancer
Konu Başlıkları
[dc.subject]
Mitotic arrest
Konu Başlıkları
[dc.subject]
Oxidative stress
Konu Başlıkları
[dc.subject]
Saccharomyces cerevisiae
Konu Başlıkları
[dc.subject]
Spindle assembly checkpoint
Haklar
[dc.rights]
info:eu-repo/semantics/closedAccess
ISSN
[dc.identifier.issn]
02365383
Sponsor Yayıncı
[dc.description.sponsorship]
114S094
Sponsor Yayıncı
[dc.description.sponsorship]
We thank Dr. Daniel J. Burke (North Carolina State University, College of Sciences, Department of Biological Sciences) for kindly sending us the S. cerevisiae strains. This study was supported by the
Sponsor Yayıncı
[dc.description.sponsorship]
Scientific and Technological Research Council of Turkey TUBIT AK) with the project number: 114S094.
Yayının ilk sayfa sayısı
[dc.identifier.startpage]
477
Yayının son sayfa sayısı
[dc.identifier.endpage]
489
Dergi Adı
[dc.relation.journal]
Acta Biologica Hungarica
Dergi Sayısı
[dc.identifier.issue]
4
Cild
[dc.identifier.volume]
68
Tek Biçim Adres
[dc.identifier.uri]
https://hdl.handle.net/20.500.11831/1531
Pubmed Id
[dc.identifier.pubmed]
PubMed ID: 29262707
Görüntülenme Sayısı ( Şehir )
Görüntülenme Sayısı ( Ülke )
Görüntülenme Sayısı ( Zaman Dağılımı )
Görüntülenme
39
20.03.2023 tarihinden bu yana
İndirme
1
20.03.2023 tarihinden bu yana
Son Erişim Tarihi
29 Eylül 2023 03:16
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mitotic arrest stress oxidative effect SAC-activation induced chromosome investigated -induced SAC-activating activity largely species However oxygen duration increased unknown (nocodazole) remains Oxidative Saccharomyces mutant reserved rights Akademiai independent showed (cdc23) conditional cerevisiae independently treatment addition
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