Integrated src kinase and costimulatory activity enhances signal transduction through single-chain chimeric receptors in T lymphocytes

被引:69
作者
Geiger, TL
Nguyen, P
Leitenberg, D
Flavell, RA
机构
[1] St Jude Childrens Res Hosp, Dept Pathol, Memphis, TN 38105 USA
[2] Univ Tennessee, Sch Med, Memphis, TN 38163 USA
[3] George Washington Univ, Washington, DC USA
[4] Yale Univ, Sch Med, New Haven, CT USA
[5] Howard Hughes Med Inst, New Haven, CT 06510 USA
关键词
D O I
10.1182/blood.V98.8.2364
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Adoptive immunotherapy using receptor-modified T lymphocytes has shown promise in preclinical studies for the treatment of infectious and malignant diseases. These modified T cells express chimeric receptors that link ligand recognition and signal transduction domains in a single gene product. Typically, a single chain Fv fragment is genetically attached to the cytoplasmic domain of the T-cell receptor (TCR) zeta chain. Modulating the signaling characteristics of chimeric receptors will be important for their application to human immunotherapy. It was hypothesized that linking coreceptor and costimulatory signaling motifs together with the zeta signaling domain will enhance receptor function. The present study compares signaling characteristics of 9 single-chain receptors consisting of the H-2K(b) extracellular and transmembrane domains and various combinations of T cell signal transduction domains. Signal transduction regions studied include the TCR zeta chain, the CD4 coreceptor, the lck protein tyrosine kinase, and the CD28 costimulatory receptor. Biochemical characteristics of the receptors, analyzed using calcium flux, receptor, and ZAP-70 phosphorylation, and lck association may be predicted from the known functions of receptor constituents. The combination of zeta to gether with coreceptor and costimulatory function in a single receptor maximizes chimeric receptor sensitivity and potency. Combining zeta with either the costimulatory or coreceptor function independently also enhances receptor function, though to a lesser extent. It is therefore possible to link TCR, coreceptor, and costimulatory activities in a single functional entity using modular domains. Such receptors demonstrate distinct signaling properties and should prove useful in the development of chimeric receptors for therapeutic purposes. (C) 2001 by The American Society of Hematology.
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页码:2364 / 2371
页数:8
相关论文
共 32 条
[1]   Can combined T-cell- and antibody-based immunotherapy outsmart tumor cells? [J].
Abken, H ;
Hombach, A ;
Reinhold, U ;
Ferrone, S .
IMMUNOLOGY TODAY, 1998, 19 (01) :2-5
[2]   Chimeric T-cell receptors: Highly specific tools to target cytotoxic T-lymphocytes to tumour cells [J].
Abken, H ;
Hombach, A ;
Heuser, C ;
Sircar, R ;
Pohl, C ;
Reinhold, U .
CANCER TREATMENT REVIEWS, 1997, 23 (02) :97-112
[3]   Qualitative and quantitative differences in T cell receptor binding of agonist and antagonist ligands [J].
Alam, SM ;
Davies, GM ;
Lin, CM ;
Zal, T ;
Nasholds, W ;
Jameson, SC ;
Hogquist, KA ;
Gascoigne, NRJ ;
Travers, PJ .
IMMUNITY, 1999, 10 (02) :227-237
[4]   INVOLVEMENT OF THE PROTEIN-TYROSINE KINASE P56(LCK) IN T-CELL SIGNALING AND THYMOCYTE DEVELOPMENT [J].
ANDERSON, SJ ;
LEVIN, SD ;
PERLMUTTER, RM .
ADVANCES IN IMMUNOLOGY, VOLUME 56, 1994, 56 :151-178
[5]  
Ausubel FA, 1995, CURRENT PROTOCOLS MO
[6]   Developmental regulation of Lck targeting to the CD8 coreceptor controls signaling in naive and memory T cells [J].
Bachmann, MF ;
Gallimore, A ;
Linkert, S ;
Cerundolo, V ;
Lanzavecchia, A ;
Kopf, M ;
Viola, A .
JOURNAL OF EXPERIMENTAL MEDICINE, 1999, 189 (10) :1521-1529
[7]  
Bitton Natacha, 1999, Frontiers in Bioscience, V4, pD386, DOI 10.2741/Bitton
[8]  
Bordignon C, 1999, HAEMATOLOGICA, V84, P1110
[9]   Chimeric Fv-ξ or Fv-ε receptors are not sufficient to induce activation or cytokine production in peripheral T cells [J].
Brocker, T .
BLOOD, 2000, 96 (05) :1999-2001
[10]   CD28 and the tyrosine kinase Lck stimulate mitogen-activated protein kinase activity in T cells via inhibition of the small G protein Rap1 [J].
Carey, KD ;
Dillon, TJ ;
Schmitt, JM ;
Baird, AM ;
Holdorf, AD ;
Straus, DB ;
Shaw, AS ;
Stork, PJS .
MOLECULAR AND CELLULAR BIOLOGY, 2000, 20 (22) :8409-8419