Non-coding RNA suppresses FUS aggregation caused by mechanistic shear stress on pipetting in a sequence-dependent manner

被引:8
|
作者
Hamad, Nesreen [1 ]
Yoneda, Ryoma [2 ]
So, Masatomo [3 ]
Kurokawa, Riki [2 ]
Nagata, Takashi [1 ,4 ]
Katahira, Masato [1 ,4 ]
机构
[1] Kyoto Univ, Inst Adv Energy, Kyoto 6110011, Japan
[2] Saitama Med Univ, Sch Med, Div Biomed Sci, Saitama 3500495, Japan
[3] Osaka Univ, Inst Prot Res, Osaka 5650871, Japan
[4] Kyoto Univ, Grad Sch Energy Sci, Kyoto 6068501, Japan
关键词
BINDING PROTEINS; CONFORMATIONAL-CHANGE; PHASE-SEPARATION; FUS/TLS; SPECIFICITY; MUTATIONS; CANCER; ROLES; GENE;
D O I
10.1038/s41598-021-89075-w
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Fused in sarcoma/translocated in liposarcoma (FUS/TLS) is a multitasking RNA/DNA binding protein. FUS aggregation is implicated in various neurodegenerative diseases. RNA was suggested to modulate phase transition of FUS. Here, we found that FUS transforms into the amorphous aggregation state as an instant response to the shear stress caused by usual pipetting even at a low FUS concentration, 100 nM. It was revealed that non-coding RNA can suppress the transformation of FUS into aggregates. The suppressive effect of RNA on FUS aggregation is sequence-dependent. These results suggested that the non-coding RNA could be a prospective suppressor of FUS aggregation caused by mechanistic stress in cells. Our finding might pave the way for more research on the role of RNAs as aggregation inhibitors, which could facilitate the development of therapies for neurodegenerative diseases.
引用
收藏
页数:11
相关论文
共 32 条
  • [1] Non-coding RNA suppresses FUS aggregation caused by mechanistic shear stress on pipetting in a sequence-dependent manner
    Nesreen Hamad
    Ryoma Yoneda
    Masatomo So
    Riki Kurokawa
    Takashi Nagata
    Masato Katahira
    Scientific Reports, 11
  • [2] Regulation of the Long Non-coding RNA Transcriptome in Endothelial Cells in Response to Shear Stress
    Sukumar, Aravin N.
    Man, H. S.
    Dubinsky, Michelle K.
    Turgeon, Paul J.
    Ku, Kyung H.
    Teitelbaum, Daniel
    Lee, Mike K.
    Marsden, Philip A.
    ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY, 2019, 39
  • [3] REGULATION OF THE LONG NON-CODING RNA TRANSCRIPTOME IN ENDOTHELIAL CELLS IN RESPONSE TO SHEAR STRESS
    Sukumar, Aravin N.
    Man, H. S. Jeffrey
    Dubinsky, Michelle K.
    Luke, William
    Ding, Mike
    Marsden, Philip A.
    ATHEROSCLEROSIS SUPPLEMENTS, 2018, 32 : 110 - 111
  • [4] Long non-coding RNA LASSIE regulates shear stress sensing and endothelial barrier function
    Laura Stanicek
    Noelia Lozano-Vidal
    Diewertje Ilse Bink
    Aukie Hooglugt
    Wenjie Yao
    Ilka Wittig
    Jos van Rijssel
    Jaap Diederik van Buul
    Anke van Bergen
    Alina Klems
    Anne Sophie Ramms
    Ferdinand Le Noble
    Patrick Hofmann
    Robert Szulcek
    ShengPeng Wang
    Stefan Offermanns
    Meryem Seda Ercanoglu
    Hyouk-Bum Kwon
    Didier Stainier
    Stephan Huveneers
    Leo Kurian
    Stefanie Dimmeler
    Reinier Abraham Boon
    Communications Biology, 3
  • [5] Long non-coding RNA LASSIE regulates shear stress sensing and endothelial barrier function
    Stanicek, Laura
    Lozano-Vidal, Noelia
    Bink, Diewertje Ilse
    Hooglugt, Aukie
    Yao, Wenjie
    Wittig, Ilka
    van Rijssel, Jos
    van Buul, Jaap Diederik
    van Bergen, Anke
    Klems, Alina
    Ramms, Anne Sophie
    Le Noble, Ferdinand
    Hofmann, Patrick
    Szulcek, Robert
    Wang, ShengPeng
    Offermanns, Stefan
    Ercanoglu, Meryem Seda
    Kwon, Hyouk-Bum
    Stainier, Didier
    Huveneers, Stephan
    Kurian, Leo
    Dimmeler, Stefanie
    Boon, Reinier Abraham
    COMMUNICATIONS BIOLOGY, 2020, 3 (01)
  • [6] A Nuclear Long Non-Coding RNA LINC00618 Accelerates Ferroptosis in a Manner Dependent upon Apoptosis
    Wang, Zuli
    Chen, Xiaowen
    Liu, Na
    Shi, Ying
    Liu, Yating
    Ouyang, Lianlian
    Tam, Samantha
    Xiao, Desheng
    Liu, Shuang
    Wen, Feiqiu
    Tao, Yongguang
    MOLECULAR THERAPY, 2021, 29 (01) : 263 - 274
  • [7] SENEBLOC, a long non-coding RNA suppresses senescence via p53-dependent and independent mechanisms
    Xu, Cheng Lin
    Sang, Ben
    Liu, Guang Zhi
    Li, Jin Ming
    Zhang, Xu Dong
    Liu, Lian Xin
    Thorne, Rick F.
    Wu, Mian
    NUCLEIC ACIDS RESEARCH, 2020, 48 (06) : 3089 - 3102
  • [8] Evolutionary and sequence-based relationships in bacterial AdoMet-dependent non-coding RNA methyltransferases
    Mosquera-Rendón J.
    Cárdenas-Brito S.
    Pineda J.D.
    Corredor M.
    Benítez-Páez A.
    BMC Research Notes, 7 (1)
  • [9] Long non-coding RNA HOTAIR promotes glioblastoma cell cycle progression in an EZH2 dependent manner
    Zhang, Kailiang
    Sun, Xiaotian
    Zhou, Xuan
    Han, Lei
    Chen, Luyue
    Shi, Zhendong
    Zhang, Anling
    Ye, Minhua
    Wang, Qixue
    Liu, Chaoyong
    Wei, Jianwei
    Ren, Yu
    Yang, Jingxuan
    Zhang, Jianning
    Pu, Peiyu
    Li, Min
    Kang, Chunsheng
    ONCOTARGET, 2015, 6 (01) : 537 - 546
  • [10] Histone H1 regulates non-coding RNA turnover on chromatin in a m6A-dependent manner
    Miguel Fernandez-Justel, Jose
    Santa-Maria, Cristina
    Martin-Virgala, Sara
    Ramesh, Shreya
    Ferrera-Lagoa, Alberto
    Salinas-Pena, Monica
    Isoler-Alcaraz, Javier
    Maslon, Magdalena M.
    Jordan, Albert
    Caceres, Javier F.
    Gomez, Maria
    CELL REPORTS, 2022, 40 (11):