CDC42 and Rac1 are implicated in the activation of the Nef-associated kinase and replication of HIV-1

被引:116
作者
Lu, XB
Wu, XN
Plemenitas, A
Yu, HF
Sawai, ET
Abo, A
Peterlin, BM
机构
[1] ONYX PHARMACEUT,RICHMOND,CA 94806
[2] UNIV CALIF SAN FRANCISCO,HOWARD HUGHES MED INST,DEPT MED,SAN FRANCISCO,CA 94143
[3] UNIV CALIF SAN FRANCISCO,DEPT MICROBIOL,SAN FRANCISCO,CA 94143
[4] UNIV CALIF SAN FRANCISCO,DEPT IMMUNOL,SAN FRANCISCO,CA 94143
[5] UNIV CALIF DAVIS,DEPT MED PATHOL,DAVIS,CA 95616
关键词
D O I
10.1016/S0960-9822(02)70792-6
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
Background: The negative factor (Nef) of human and simian immunodeficiency viruses (HIV-1, HIV-2 and SIV) is required for high levels of viremia and progression to AIDS. Additionally, Nef leads to cellular activation, increased viral infectivity and decreased expression of CD4 on the cell surface. Previously, we and others demonstrated that Nef associates with a cellular serine kinase (NAK) activity. Recently, it was demonstrated that NAK bears structural and functional similarity to p21-activated kinases (PAKs). Results: In this study, we demonstrate that Nef not only binds to but also activates NAK via the small GTPases CDC42 and Rad. First, the dominant-negative PAK (PAKR), via its GTPase-binding domain, and dominant-negative GTPases (CDC42Hs-N17 and Rac1-N17) block the ability of Nef to associate with and activate NAK. Second, constitutively active small GTPases (CDC42Hs-V12 and Rac1-V12) potentiate the effects of Nef. Third, interactions between Nef and NAK result in several cellular effector functions, such as activation of the serum-response pathway. And finally, PAKR, CDC42Hs-N17 and Rac1-N17 decrease levels of HIV-1 production to those of virus from which the nef gene is deleted. Conclusions: By activating NAK via small GTPases and their downstream effecters, Nef interacts with regulatory pathways required for cell growth, cytoskeletal rearrangement and endocytosis. Thus, NAK could participate in the budding of new virions, the modification of viral proteins and the increased endocytosis of surface molecules such as CD4. Moreover, blocking the activity of these GTPases could lead to new therapeutic interventions against AIDS.
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页码:1677 / 1684
页数:8
相关论文
共 38 条
[1]   NEF PROTEIN OF HIV-1 IS A TRANSCRIPTIONAL REPRESSOR OF HIV-1 LTR [J].
AHMAD, N ;
VENKATESAN, S .
SCIENCE, 1988, 241 (4872) :1481-1485
[2]  
ALLAN JS, 1987, BLOOD, V69, P331
[3]   IDENTIFICATION OF A MOUSE P21(CDC42/RAC) ACTIVATED KINASE [J].
BAGRODIA, S ;
TAYLOR, SJ ;
CREASY, CL ;
CHERNOFF, J ;
CERIONE, RA .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1995, 270 (39) :22731-22737
[4]   HIV-1 NEF LEADS TO INHIBITION OR ACTIVATION OF T-CELLS DEPENDING ON ITS INTRACELLULAR-LOCALIZATION [J].
BAUR, AS ;
SAWAI, ET ;
DAZIN, P ;
FANTL, WJ ;
CHENGMAYER, C ;
PETERLIN, BM .
IMMUNITY, 1994, 1 (05) :373-384
[5]   DIFFERENTIAL-EFFECTS OF NEF ON HIV REPLICATION - IMPLICATIONS FOR VIRAL PATHOGENESIS IN THE HOST [J].
CHENGMAYER, C ;
IANNELLO, P ;
SHAW, K ;
LUCIW, PA ;
LEVY, JA .
SCIENCE, 1989, 246 (4937) :1629-1632
[6]   GENOMIC STRUCTURE OF AN ATTENUATED QUASI-SPECIES OF HIV-1 FROM A BLOOD-TRANSFUSION DONOR AND RECIPIENTS [J].
DEACON, NJ ;
TSYKIN, A ;
SOLOMON, A ;
SMITH, K ;
LUDFORDMENTING, M ;
HOOKER, DJ ;
MCPHEE, DA ;
GREENWAY, AL ;
ELLETT, A ;
CHATFIELD, C ;
LAWSON, VA ;
CROWE, S ;
MAERZ, A ;
SONZA, S ;
LEARMONT, J ;
SULLIVAN, JS ;
CUNNINGHAM, A ;
DWYER, D ;
DOWTON, D ;
MILLS, J .
SCIENCE, 1995, 270 (5238) :988-991
[7]   IDENTIFICATION OF A NEF ALLELE THAT CAUSES LYMPHOCYTE-ACTIVATION AND ACUTE DISEASE IN MACAQUE MONKEYS [J].
DU, ZJ ;
LANG, SM ;
SASSEVILLE, VG ;
LACKNER, AA ;
ILYINSKII, PO ;
DANIEL, MD ;
JUNG, JU ;
DESROSIERS, RC .
CELL, 1995, 82 (04) :665-674
[8]   INFECTIOUS MUTANTS OF HTLV-III WITH CHANGES IN THE 3' REGION AND MARKEDLY REDUCED CYTOPATHIC EFFECTS [J].
FISHER, AG ;
RATNER, L ;
MITSUYA, H ;
MARSELLE, LM ;
HARPER, ME ;
BRODER, S ;
GALLO, RC ;
WONGSTAAL, F .
SCIENCE, 1986, 233 (4764) :655-659
[9]   HIV NUCLEAR IMPORT IS GOVERNED BY THE PHOSPHOTYROSINE-MEDIATED BINDING OF MATRIX TO THE CORE DOMAIN OF INTEGRASE [J].
GALLAY, P ;
SWINGLER, S ;
SONG, JP ;
BUSHMAN, F ;
TRONO, D .
CELL, 1995, 83 (04) :569-576
[10]  
Harden N, 1996, MOL CELL BIOL, V16, P1896