DDX3X and DDX3Y are redundant in protein synthesis

被引:37
|
作者
Venkataramanan, Srivats [1 ,3 ]
Gadek, Margaret [1 ]
Calviello, Lorenzo [1 ,4 ,5 ]
Wilkins, Kevin [1 ]
Floor, Stephen N. [1 ,2 ]
机构
[1] Univ Calif San Francisco, Dept Cell & Tissue Biol, San Francisco, CA 94143 USA
[2] Univ Calif San Francisco, Helen Diller Family Comprehens Canc Ctr, San Francisco, CA 94143 USA
[3] Sardona Therapeut, San Francisco, CA 94107 USA
[4] Human Technopole, Funct Genom Ctr, I-20157 Milan, Italy
[5] Human Technopole, Computat Biol Ctr, I-20157 Milan, Italy
基金
美国国家卫生研究院;
关键词
translational control; DEAD-box proteins; RNA; sex differences; AZFA GENE DDX3Y; INTELLECTUAL DISABILITY; MESSENGER-RNAS; COMMON-CAUSE; TRANSLATION; MUTATIONS; CELLS; IDENTIFICATION; LANDSCAPE; SUBFAMILY;
D O I
10.1261/rna.078926.121
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
DDX3 is a DEAD-box RNA helicase that regulates translation and is encoded by the X- and Y-linked paralogs DDX3X and DDX3Y. While DDX3X is ubiquitously expressed in human tissues and essential for viability, DDX3Y is male-specific and shows lower and more variable expression than DDX3X in somatic tissues. Heterozygous genetic lesions in DDX3X mediate a class of developmental disorders called DDX3X syndrome, while loss of DDX3Y is implicated in male infertility. One possible explanation for female-bias in DDX3X syndrome is that DDX3Y encodes a polypeptide with different biochemical activity. In this study, we use ribosome profiling and in vitro translation to demonstrate that the X- and Y-linked paralogs of DDX3 play functionally redundant roles in translation. We find that transcripts that are sensitive to DDX3X depletion or mutation are rescued by complementation with DDX3Y. Our data indicate that DDX3X and DDX3Y proteins can functionally complement each other in the context of mRNA translation in human cells. DDX3Y is not expressed in a large fraction of the central nervous system. These findings suggest that expression differences, not differences in paralog-dependent protein synthesis, underlie the sex-bias of DDX3X-associated diseases.
引用
收藏
页码:1577 / 1588
页数:12
相关论文
共 50 条
  • [1] Biochemical Characterization of the Sexually Dimorphic Helicases DDX3X and DDX3Y
    Owens, Michael C.
    Yanas, Amber
    Shen, Hui
    Zhang, Celia
    Liu, Kathy F.
    FASEB JOURNAL, 2022, 36
  • [2] EXPRESSION OF DDX3Y/DDX3X IN DIFFERENT TESTICULAR GERM CELL TUMORS
    Hadaschik, Boris
    Gueler, Banu
    Zimmer, Jutta
    Hohenfellner, Markus
    Vogt, Peter
    JOURNAL OF UROLOGY, 2011, 185 (04): : E237 - E237
  • [3] One step PCR protocol for sex determination in pigs based in the DEAD Box Protein (DDX3X/DDX3Y) Gene
    Lucas, C.
    Spate, A.
    Samuel, M.
    Spate, L.
    Warren, W.
    Prather, R.
    Wells, K.
    TRANSGENIC RESEARCH, 2020, 29 (04) : 483 - 483
  • [4] Sex Determination of Cattle Meat by Polymerase Chain Reaction Amplification of the DEAD Box Protein (DDX3X/DDX3Y) Gene
    Gokulakrishnan, P.
    Kumar, R. R.
    Sharma, B. D.
    Mendiratta, S. K.
    Sharma, D.
    ASIAN-AUSTRALASIAN JOURNAL OF ANIMAL SCIENCES, 2012, 25 (05): : 733 - 737
  • [5] An azoospermic factor gene, Ddx3y and its paralog, Ddx3x are dispensable in germ cells for male fertility
    Matsumura, Takafumi
    Endo, Tsutomu
    Isotani, Ayako
    Ogawa, Masaki
    Ikawa, Masahito
    JOURNAL OF REPRODUCTION AND DEVELOPMENT, 2019, 65 (02): : 121 - 128
  • [6] Using smFRET to understand structural dynamics of sex-biased RNA helicases DDX3X and DDX3Y
    Yanas, Amber M.
    Fritsch, Clark
    Shen, Hui
    Shweta, Him
    Owens, Michael
    Zhang, Celia
    Fare, Charlotte
    Shorter, James
    Goldman, Yale E.
    Liu, Kathy F.
    BIOPHYSICAL JOURNAL, 2022, 121 (03) : 59 - 59
  • [7] Sequential inverse dysregulation of the RNA helicases DDX3X and DDX3Y facilitates MYC-driven lymphomagenesis
    Gong, Chun
    Krupka, Joanna A.
    Gao, Jie
    Grigoropoulos, Nicholas F.
    Giotopoulos, George
    Asby, Ryan
    Screen, Michael
    Usheva, Zelvera
    Cucco, Francesco
    Barrans, Sharon
    Painter, Daniel
    Zaini, Nurmahirah Binte Mohammed
    Haupl, Bjoern
    Bornelov, Susanne
    De Los Mozos, Igor Ruiz
    Meng, Wei
    Zhou, Peixun
    Blain, Alex E.
    Forde, Sorcha
    Matthews, Jamie
    Tan, Michelle Guet Khim
    Burke, G. A. Amos
    Sze, Siu Kwan
    Beer, Philip
    Burton, Cathy
    Campbell, Peter
    Rand, Vikki
    Turner, Suzanne D.
    Ule, Jernej
    Roman, Eve
    Tooze, Reuben
    Oellerich, Thomas
    Huntly, Brian J.
    Turner, Martin
    Du, Ming-Qing
    Samarajiwa, Shamith A.
    Hodson, Daniel J.
    MOLECULAR CELL, 2021, 81 (19) : 4059 - +
  • [8] Sexually dimorphic RNA helicases DDX3X and DDX3Y differentially regulate RNA metabolism through phase separation
    Shen, Hui
    Yanas, Amber
    Owens, Michael C.
    Zhang, Celia
    Fritsch, Clark
    Fare, Charlotte M.
    Copley, Katie E.
    Shorter, James
    Goldman, Yale E.
    Liu, Kathy Fange
    MOLECULAR CELL, 2022, 82 (14) : 2588 - +
  • [9] DDX3X, the X homologue of AZFa gene DDX3Y, expresses a complex pattern of transcript variants only in the male germ line
    Rauschendorf, Marc-Alexander
    Zimmer, Jutta
    Ohnmacht, Caroline
    Vogt, Peter H.
    MOLECULAR HUMAN REPRODUCTION, 2014, 20 (12) : 1208 - 1222
  • [10] Novel variant in DDX3X causes syndromic DDX3X related neurodevelopmental disorder
    Siauryte, Kamile
    Grigalioniene, Kristina
    Utkus, Algirdas
    Matuleviciene, Ausra
    EUROPEAN JOURNAL OF HUMAN GENETICS, 2022, 30 (SUPPL 1) : 234 - 235