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Solution structure of the LIM-homeodomain transcription factor complex Lhx3/Ldb1 and the effects of a pituitary mutation on key Lhx3 interactions.

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Solution structure of the LIM-homeodomain transcription factor complex Lhx3/Ldb1 and the effects of a pituitary mutation on key Lhx3 interactions. / Bhati, Mugdha; Lee, Christopher; Gadd, Morgan Stuart et al.
In: PLoS ONE, Vol. 7, No. 7, e40719, 25.07.2012.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Bhati, M, Lee, C, Gadd, MS, Jeffries, CM, Kwan, AH, Whitten, AE, Trewhella, J, Mackay, JP & Matthews, JM 2012, 'Solution structure of the LIM-homeodomain transcription factor complex Lhx3/Ldb1 and the effects of a pituitary mutation on key Lhx3 interactions.', PLoS ONE, vol. 7, no. 7, e40719. https://doi.org/10.1371/journal.pone.0040719

APA

Bhati, M., Lee, C., Gadd, M. S., Jeffries, C. M., Kwan, A. H., Whitten, A. E., Trewhella, J., Mackay, J. P., & Matthews, J. M. (2012). Solution structure of the LIM-homeodomain transcription factor complex Lhx3/Ldb1 and the effects of a pituitary mutation on key Lhx3 interactions. PLoS ONE, 7(7), Article e40719. https://doi.org/10.1371/journal.pone.0040719

Vancouver

Bhati M, Lee C, Gadd MS, Jeffries CM, Kwan AH, Whitten AE et al. Solution structure of the LIM-homeodomain transcription factor complex Lhx3/Ldb1 and the effects of a pituitary mutation on key Lhx3 interactions. PLoS ONE. 2012 Jul 25;7(7):e40719. doi: 10.1371/journal.pone.0040719

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Bibtex

@article{9f5a7ac8385a46aabb03bd872d6e2ff8,
title = "Solution structure of the LIM-homeodomain transcription factor complex Lhx3/Ldb1 and the effects of a pituitary mutation on key Lhx3 interactions.",
abstract = "Lhx3 is a LIM-homeodomain (LIM-HD) transcription factor that regulates neural cell subtype specification and pituitary development in vertebrates, and mutations in this protein cause combined pituitary hormone deficiency syndrome (CPHDS). The recently published structures of Lhx3 in complex with each of two key protein partners, Isl1 and Ldb1, provide an opportunity to understand the effect of mutations and posttranslational modifications on key protein-protein interactions. Here, we use small-angle X-ray scattering of an Ldb1-Lhx3 complex to confirm that in solution the protein is well represented by our previously determined NMR structure as an ensemble of conformers each comprising two well-defined halves (each made up of LIM domain from Lhx3 and the corresponding binding motif in Ldb1) with some flexibility between the two halves. NMR analysis of an Lhx3 mutant that causes CPHDS, Lhx3(Y114C), shows that the mutation does not alter the zinc-ligation properties of Lhx3, but appears to cause a structural rearrangement of the hydrophobic core of the LIM2 domain of Lhx3 that destabilises the domain and/or reduces the affinity of Lhx3 for both Ldb1 and Isl1. Thus the mutation would affect the formation of Lhx3-containing transcription factor complexes, particularly in the pituitary gland where these complexes are required for the production of multiple pituitary cell types and hormones.",
author = "Mugdha Bhati and Christopher Lee and Gadd, {Morgan Stuart} and Jeffries, {Cy M.} and Kwan, {Ann H.} and Whitten, {Andrew E.} and Jill Trewhella and Mackay, {Joel P.} and Matthews, {Jacqueline M.}",
year = "2012",
month = jul,
day = "25",
doi = "10.1371/journal.pone.0040719",
language = "English",
volume = "7",
journal = "PLoS ONE",
issn = "1932-6203",
publisher = "Public Library of Science",
number = "7",

}

RIS

TY - JOUR

T1 - Solution structure of the LIM-homeodomain transcription factor complex Lhx3/Ldb1 and the effects of a pituitary mutation on key Lhx3 interactions.

AU - Bhati, Mugdha

AU - Lee, Christopher

AU - Gadd, Morgan Stuart

AU - Jeffries, Cy M.

AU - Kwan, Ann H.

AU - Whitten, Andrew E.

AU - Trewhella, Jill

AU - Mackay, Joel P.

AU - Matthews, Jacqueline M.

PY - 2012/7/25

Y1 - 2012/7/25

N2 - Lhx3 is a LIM-homeodomain (LIM-HD) transcription factor that regulates neural cell subtype specification and pituitary development in vertebrates, and mutations in this protein cause combined pituitary hormone deficiency syndrome (CPHDS). The recently published structures of Lhx3 in complex with each of two key protein partners, Isl1 and Ldb1, provide an opportunity to understand the effect of mutations and posttranslational modifications on key protein-protein interactions. Here, we use small-angle X-ray scattering of an Ldb1-Lhx3 complex to confirm that in solution the protein is well represented by our previously determined NMR structure as an ensemble of conformers each comprising two well-defined halves (each made up of LIM domain from Lhx3 and the corresponding binding motif in Ldb1) with some flexibility between the two halves. NMR analysis of an Lhx3 mutant that causes CPHDS, Lhx3(Y114C), shows that the mutation does not alter the zinc-ligation properties of Lhx3, but appears to cause a structural rearrangement of the hydrophobic core of the LIM2 domain of Lhx3 that destabilises the domain and/or reduces the affinity of Lhx3 for both Ldb1 and Isl1. Thus the mutation would affect the formation of Lhx3-containing transcription factor complexes, particularly in the pituitary gland where these complexes are required for the production of multiple pituitary cell types and hormones.

AB - Lhx3 is a LIM-homeodomain (LIM-HD) transcription factor that regulates neural cell subtype specification and pituitary development in vertebrates, and mutations in this protein cause combined pituitary hormone deficiency syndrome (CPHDS). The recently published structures of Lhx3 in complex with each of two key protein partners, Isl1 and Ldb1, provide an opportunity to understand the effect of mutations and posttranslational modifications on key protein-protein interactions. Here, we use small-angle X-ray scattering of an Ldb1-Lhx3 complex to confirm that in solution the protein is well represented by our previously determined NMR structure as an ensemble of conformers each comprising two well-defined halves (each made up of LIM domain from Lhx3 and the corresponding binding motif in Ldb1) with some flexibility between the two halves. NMR analysis of an Lhx3 mutant that causes CPHDS, Lhx3(Y114C), shows that the mutation does not alter the zinc-ligation properties of Lhx3, but appears to cause a structural rearrangement of the hydrophobic core of the LIM2 domain of Lhx3 that destabilises the domain and/or reduces the affinity of Lhx3 for both Ldb1 and Isl1. Thus the mutation would affect the formation of Lhx3-containing transcription factor complexes, particularly in the pituitary gland where these complexes are required for the production of multiple pituitary cell types and hormones.

U2 - 10.1371/journal.pone.0040719

DO - 10.1371/journal.pone.0040719

M3 - Journal article

VL - 7

JO - PLoS ONE

JF - PLoS ONE

SN - 1932-6203

IS - 7

M1 - e40719

ER -