Molecular and Cellular Biology · 1997 · 94 citations · 37 references
LIM-homeodomain proteins direct cellular differentiation by activating transcription of cell-type-specific genes, but this activation requires cooperation with other nuclear factors. The LIM-homeodomain protein Lmx1 cooperates with the basic helix-loop-helix (bHLH) protein E47/Pan-1 to activate the insulin promoter in transfected fibroblasts. In this study, we show that two proteins originally called Lmx1 are the closely related products of two distinct vertebrate genes, Lmx1.1 and Lmx1.2. We have used yeast genetic systems to delineate the functional domains of the Lmx1 proteins and to characterize the physical interactions between Lmx1 proteins and E47/Pan-1 that produce synergistic transcriptional activation. The LIM domains of the Lmx1 proteins, and particularly the second LIM domain, mediate both specific physical interactions and transcriptional synergy with E47/Pan-1. The LIM domains of the LIM-homeodomain protein Isl-1, which cannot mediate transcriptional synergy with E47/Pan-1, do not interact with E47/Pan-1. In vitro studies demonstrate that the Lmx1.1 LIM2 domain interacts specifically with the bHLH domain of E47/Pan-1. These studies provide the basis for a model of the assembly of LIM-homeodomain-containing complexes on DNA elements that direct cell-type-restricted transcription in differentiated tissues.
37
A novel genetic system to detect protein–protein interactions
Stanley Fields, Ok-kyu Song · Nature · 1989 · 6.1K citations
Firefly luciferase gene: structure and expression in mammalian cells.
Jeffrey R. de Wet, Keith V. Wood, M. DeLuca et al. · Molecular and Cellular Biology · 1987 · 3.1K citations · Full text
Mutations in the hepatocyte nuclear factor-1α gene in maturity-onset diabetes of the young (MODY3)
Kazuya Yamagata, Naohisa Oda, Pamela J. Kaisaki et al. · Nature · 1996 · 1.6K citations · Full text