Molecular chaperone Hsp90 protects KCBP from degradation by proteasome in Dunaliella salina cells

被引:0
|
作者
Ke Shi
Liang Yang
Xiuhong Du
Dan Guo
Lexun Xue
机构
[1] Henan Medical College,Department of Biochemistry and Molecular Biology
[2] the First Affiliated Hospital,Laboratory for Cell Biology
[3] Zhengzhou University,Department of Microbiology and Immunology and Medicine
[4] Henan Medical College,undefined
来源
Folia Microbiologica | 2021年 / 66卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Kinesin-like calmodulin-binding protein (KCBP) is a unique kinesin with half kinesin and half myosin, with kinesin motor domain at C-terminus and myosin tail homology region 4 (MyTH4) and band 4.1, ezrin, radixin, moesin (FERM) domains at N-terminus. The special structure endows KCBP multi-intracellular functions, including cell division, trichome morphogenesis in plants, and flagellar function in algae. However, little is known about the molecular mechanism underlying these functions. Here, we identified a molecular chaperone Hsp90 as a novel binding partner with KCBP in Dunaliella salina using a yeast two-hybrid screen. Further analysis showed that Hsp90 interacted with both the N-terminal and C-terminal of DsKCBP. Since Hsp90 was involved in the stability and proteolytic turnover of numerous proteins, whether Hsp90 regulated the degradation of DsKCBP was investigated. Our results showed that both Hsp90 and DsKCBP presented in the purified proteasome, and the interaction of DsKCBP-Hsp90 was inhibited upon Hsp90 inhibitor geldanamycin treatment. The level of DsKCBP proteins was diminished remarkably indicating that the disassociation of DsKCBP from Hsp90 accelerated the degradation of the former. Furthermore, immunofluorescence results showed that the localization of DsKCBP at basal body and flagella was disappeared by Hsp90 inhibition. The increased mRNA level of DsKCBP during flagellar assembly was not obvious by geldanamycin treatment. These data provided evidence that Hsp90 protected DsKCBP from degradation by proteasome and was involved in the role of DsKCBP in flagellar assembly.
引用
收藏
页码:949 / 957
页数:8
相关论文
共 50 条
  • [31] The Hsp90 molecular chaperone: an open and shut case for treatment
    Pearl, Laurence H.
    Prodromou, Chrisostomos
    Workman, Paul
    BIOCHEMICAL JOURNAL, 2008, 410 (439-453) : 439 - 453
  • [32] Establishing Order Through Disorder by the Hsp90 Molecular Chaperone
    Babu, Neethu
    Freeman, Brian C.
    JOURNAL OF MOLECULAR BIOLOGY, 2024, 436 (14)
  • [33] The Hsp90 molecular chaperone modulates multiple telomerase activities
    Toogun, Oyetunji A.
    DeZwaan, Diane C.
    Freeman, Brian C.
    MOLECULAR AND CELLULAR BIOLOGY, 2008, 28 (01) : 457 - 467
  • [34] Understanding of the Hsp90 molecular chaperone reaches new heights
    Vaughan, Cara K.
    Neckers, Len
    Piper, Peter W.
    NATURE STRUCTURAL & MOLECULAR BIOLOGY, 2010, 17 (12) : 1400 - 1404
  • [35] Development of a fluorescence polarization assay for the molecular chaperone Hsp90
    Kim, J
    Felts, S
    Llauger, L
    He, HZ
    Huezo, H
    Rosen, H
    Chiosis, G
    JOURNAL OF BIOMOLECULAR SCREENING, 2004, 9 (05) : 375 - 381
  • [36] A Primate Specific Extra Domain in the Molecular Chaperone Hsp90
    Tripathi, Vishwadeepak
    Obermann, Wolfgang M. J.
    PLOS ONE, 2013, 8 (08):
  • [37] Substrate transfer from the chaperone Hsp70 to Hsp90
    Wegele, H
    Wandinger, SK
    Schmid, AB
    Reinstein, J
    Buchner, J
    JOURNAL OF MOLECULAR BIOLOGY, 2006, 356 (03) : 802 - 811
  • [38] The 90-kDa stress protein, Hsp90, is a novel molecular chaperone
    Yahara, I
    Minami, Y
    Miyata, Y
    STRESS OF LIFE: FROM MOLECULES TO MAN, 1998, 851 : 54 - 60
  • [39] Hsp90 enhances degradation of oxidized calmodulin by the 20 S proteasome
    Whittier, JE
    Xiong, YJ
    Rechsteiner, MC
    Squier, TC
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (44) : 46135 - 46142
  • [40] A novel chaperone-activity-reducing mechanism of the 90-kDa molecular chaperone HSP90
    Itoh, H
    Ogura, M
    Komatsuda, A
    Wakui, H
    Miura, AB
    Tashima, Y
    BIOCHEMICAL JOURNAL, 1999, 343 : 697 - 703