Purification of a ligand for the EPH-like receptor HEK using a biosensor-based affinity detection approach

被引:57
作者
Lackmann, M [4 ]
Bucci, T
Mann, RJ
Kravets, LA
Viney, E
Smith, F
Moritz, RL
Carter, W
Simpson, RJ
Nicola, NA
Mackwell, K
Nice, EC
Wilks, AF
Boyd, AW
机构
[1] ROYAL MELBOURNE HOSP,WALTER & ELIZA HALL INST MED RES,MELBOURNE BRANCH,PARKVILLE,VIC 3050,AUSTRALIA
[2] ROYAL MELBOURNE HOSP,WALTER & ELIZA HALL INST MED RES,LIONS CANC RES LAB,PARKVILLE,VIC 3050,AUSTRALIA
[3] ROYAL MELBOURNE HOSP,WALTER & ELIZA HALL INST MED RES,EPITHELIAL LAB,PARKVILLE,VIC 3050,AUSTRALIA
[4] ROYAL MELBOURNE HOSP,WALTER & ELIZA HALL INST MED RES,GROWTH REGULAT LAB,PARKVILLE,VIC 3050,AUSTRALIA
[5] ROYAL MELBOURNE HOSP,WALTER & ELIZA HALL INST MED RES,CANC RES UNIT,PARKVILLE,VIC 3050,AUSTRALIA
关键词
D O I
10.1073/pnas.93.6.2523
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
Advances in screening technologies allowing the identification of growth factor receptors solely by virtue of DNA or protein sequence comparison call for novel methods to isolate corresponding ligand growth factors. The EPH-like receptor tyrosine kinase (RTK) HEK (human EPH-like kinase) was identified previously as a membrane antigen on the LK63 human pre-B-cell line and overexpression in leukemic specimens and cell lines suggested a role in oncogenesis. We developed a biosensor-based approach using the immobilized HEK receptor exodomain to detect and monitor purification of the HEK ligand. A protein purification protocol, which included HEK affinity chromatography, achieved a 1.8 x 10(6)-fold purification of an approximate to 23-kDa protein from human placental conditioned medium. Analysis of specific sHEK (soluble extracellular domain of HEI) ligand interactions in the first and final purification steps suggested a ligand concentration of 40 pM in the source material and a K-d Of 2-3 nM. Since the purified ligand was N-terminally blocked, we generated tryptic peptides and N-terminal amino acid sequence analysis of 7 tryptic fragments of the S-pyridylethylated protein unequivocally matched the sequence for AL-1, a recently reported ligand for the related EPH-like RTK REK7 (Winslow, J. W., Moran, P., Valverde, J., Shih, A., Yuan, J. Q., Wong, S. C., Tsai, S.P., Goddard, A., Henzel, W.J., Hefti, F., Beck, K.D. & Caras, I. W. (1995) Neuron 14, 973-981). Our findings demonstrate the application of biosensor technology in ligand purification and show that AL-1, as has been found for other ligands of the EPH-like RTK family, binds more than one receptor.
引用
收藏
页码:2523 / 2527
页数:5
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