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Conformational flexibility of the oncogenic protein LMO2 primes the formation of the multi-protein transcription complex.


ABSTRACT: LMO2 was discovered via chromosomal translocations in T-cell leukaemia and shown normally to be essential for haematopoiesis. LMO2 is made up of two LIM only domains (thus it is a LIM-only protein) and forms a bridge in a multi-protein complex. We have studied the mechanism of formation of this complex using a single domain antibody fragment that inhibits LMO2 by sequestering it in a non-functional form. The crystal structure of LMO2 with this antibody fragment has been solved revealing a conformational difference in the positioning and angle between the two LIM domains compared with its normal binding. This contortion occurs by bending at a central helical region of LMO2. This is a unique mechanism for inhibiting an intracellular protein function and the structural contusion implies a model in which newly synthesized, intrinsically disordered LMO2 binds to a partner protein nucleating further interactions and suggests approaches for therapeutic targeting of LMO2.

SUBMITTER: Sewell H 

PROVIDER: S-EPMC3887373 | biostudies-literature | 2014 Jan

REPOSITORIES: biostudies-literature

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Conformational flexibility of the oncogenic protein LMO2 primes the formation of the multi-protein transcription complex.

Sewell H H   Tanaka T T   El Omari K K   Mancini E J EJ   Cruz A A   Fernandez-Fuentes N N   Chambers J J   Rabbitts T H TH  

Scientific reports 20140110


LMO2 was discovered via chromosomal translocations in T-cell leukaemia and shown normally to be essential for haematopoiesis. LMO2 is made up of two LIM only domains (thus it is a LIM-only protein) and forms a bridge in a multi-protein complex. We have studied the mechanism of formation of this complex using a single domain antibody fragment that inhibits LMO2 by sequestering it in a non-functional form. The crystal structure of LMO2 with this antibody fragment has been solved revealing a confor  ...[more]

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