TRIM5α Degradation via Autophagy Is Not Required for Retroviral Restriction

被引:39
作者
Imam, Sabrina [1 ]
Talley, Sarah [2 ]
Nelson, Rachel S. [1 ]
Dharan, Adarsh [1 ]
O'Connor, Christopher [3 ]
Hope, Thomas J. [4 ]
Campbell, Edward M. [1 ,2 ]
机构
[1] Loyola Univ Chicago, Stritch Sch Med, Dept Microbiol & Immunol, Maywood, IL USA
[2] Loyola Univ Chicago, Stritch Sch Med, Integrat Cell Biol Program, Maywood, IL USA
[3] Maryville Univ, Dept Biol Sci, St Louis, MO USA
[4] Northwestern Univ, Feinberg Sch Med, Dept Cell & Mol Biol, Chicago, IL 60611 USA
基金
美国国家卫生研究院;
关键词
IMMUNODEFICIENCY-VIRUS TYPE-1; TRIM FAMILY; REVERSE TRANSCRIPTION; CYTOPLASMIC BODIES; RHESUS TRIM5-ALPHA; OLD-WORLD; HIV-1; PROTEINS; INTERMEDIATE; INHIBITION;
D O I
10.1128/JVI.03033-15
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
TRIM5 alpha is an interferon-inducible retroviral restriction factor that prevents infection by inducing the abortive disassembly of capsid cores recognized by its C-terminal PRY/SPRY domain. The mechanism by which TRIM5 alpha mediates the disassembly of viral cores is poorly understood. Previous studies demonstrated that proteasome inhibitors abrogate the ability of TRIM5 alpha to induce premature core disassembly and prevent reverse transcription; however, viral infection is still inhibited, indicating that the proteasome is partially involved in the restriction process. Alternatively, we and others have observed that TRIM5 alpha associates with proteins involved in autophagic degradation pathways, and one recent study found that autophagic degradation is required for the restriction of retroviruses by TRIM5 alpha. Here, we show that TRIM5 alpha is basally degraded via autophagy in the absence of restriction-sensitive virus. We observe that the autophagy markers LC3b and lysosome-associated membrane protein 2A (LAMP2A) localize to a subset of TRIM5 alpha cytoplasmic bodies, and inhibition of lysosomal degradation with bafilomycin A1 increases this association. To test the requirement for macroautophagy in restriction, we examined the ability of TRIM5 alpha to restrict retroviral infection in cells depleted of the autophagic mediators ATG5, Beclin1, and p62. In all cases, restriction of retroviruses by human TRIM5 alpha, rhesus macaque TRIM5 alpha, and owl monkey TRIM-Cyp remained potent in cells depleted of these autophagic effectors by small interfering RNA (siRNA) knockdown or clustered regularly interspaced short palindromic repeat (CRISPR)-Cas9 genome editing. Collectively, these results are consistent with observations that the turnover of TRIM5 alpha proteins is sensitive to autophagy inhibition; however, the data presented here do not support observations that the inhibition of autophagy abrogates retroviral restriction by TRIM5 proteins.
引用
收藏
页码:3400 / 3410
页数:11
相关论文
共 42 条
[1]   Proteasome inhibition reveals that a functional preintegration complex intermediate can be generated during restriction by diverse TRIM5 proteins [J].
Anderson, Jenny L. ;
Campbell, Edward M. ;
Wu, Xiaolu ;
Vandegraaff, Nick ;
Engelman, Alan ;
Hope, Thomas J. .
JOURNAL OF VIROLOGY, 2006, 80 (19) :9754-9760
[2]   Comparative Large Scale Characterization of Plant versus Mammal Proteins Reveals Similar and Idiosyncratic N-α-Acetylation Features [J].
Bienvenut, Willy V. ;
Sumpton, David ;
Martinez, Aude ;
Lilla, Sergio ;
Espagne, Christelle ;
Meinnel, Thierry ;
Giglione, Carmela .
MOLECULAR & CELLULAR PROTEOMICS, 2012, 11 (06)
[3]   BAFILOMYCINS - A CLASS OF INHIBITORS OF MEMBRANE ATPASES FROM MICROORGANISMS, ANIMAL-CELLS, AND PLANT-CELLS [J].
BOWMAN, EJ ;
SIEBERS, A ;
ALTENDORF, K .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1988, 85 (21) :7972-7976
[4]   Visualization of a proteasome-independent intermediate during restriction of HIV-1 by rhesus TRIM5α [J].
Campbell, Edward M. ;
Perez, Omar ;
Anderson, Jenny L. ;
Hope, Thomas J. .
JOURNAL OF CELL BIOLOGY, 2008, 180 (03) :549-561
[5]   TRIM5α cytoplasmic bodies are highly dynamic structures [J].
Campbell, Edward M. ;
Dodding, Mark P. ;
Yap, Melvyn W. ;
Wu, Xiaolu ;
Gallois-Montbrun, Sarah ;
Malim, Michael H. ;
Stoye, Jonathan P. ;
Hope, Thomas J. .
MOLECULAR BIOLOGY OF THE CELL, 2007, 18 (06) :2102-2111
[6]   Disruption of the actin cytoskeleton can complement the ability of Nef to enhance human immunodeficiency virus type 1 infectivity [J].
Campbell, EM ;
Nunez, R ;
Hope, TJ .
JOURNAL OF VIROLOGY, 2004, 78 (11) :5745-5755
[7]   Human TRIM Gene Expression in Response to Interferons [J].
Carthagena, Laetitia ;
Bergamaschi, Anna ;
Luna, Joseph M. ;
David, Annie ;
Uchil, Pradeep D. ;
Margottin-Goguet, Florence ;
Mothes, Walther ;
Hazan, Uriel ;
Transy, Catherine ;
Pancino, Gianfranco ;
Nisole, Sebastien .
PLOS ONE, 2009, 4 (03)
[8]   Rapid turnover and polyubiquitylation of the retroviral restriction factor TRIM5 [J].
Diaz-Griffero, Felipe ;
Li, Xing ;
Javanbakht, Hassan ;
Song, Byeongwoon ;
Welikala, Sohanya ;
Stremlau, Matthew ;
Sodroski, Joseph .
VIROLOGY, 2006, 349 (02) :300-315
[9]   A B-Box 2 Surface Patch Important for TRIM5α Self-Association, Capsid Binding Avidity, and Retrovirus Restriction [J].
Diaz-Griffero, Felipe ;
Qin, Xu-rong ;
Hayashi, Fumiaki ;
Kigawa, Takanori ;
Finzi, Andres ;
Sarnak, Zoe ;
Lienlaf, Maritza ;
Yokoyama, Shigeyuki ;
Sodroski, Joseph .
JOURNAL OF VIROLOGY, 2009, 83 (20) :10737-10751
[10]   TRIM5α requires Ube2W to anchor Lys63-linked ubiquitin chains and restrict reverse transcription [J].
Fletcher, Adam J. ;
Christensen, Devin E. ;
Nelson, Chad ;
Tan, Choon Ping ;
Schaller, Torsten ;
Lehner, Paul J. ;
Sundquist, Wesley I. ;
Towers, Greg J. .
EMBO JOURNAL, 2015, 34 (15) :2078-2095