Functional characterization of genetically labeled gonadotropes.

Standard

Functional characterization of genetically labeled gonadotropes. / Wen, Shuping; Schwarz, Jürgen; Niculescu, Dragos; Dinu, Crenguta; Bauer, Christiane K.; Hirdes, Wiebke; Boehm, Ulrich.

in: ENDOCRINOLOGY, Jahrgang 149, Nr. 6, 6, 2008, S. 2701-2711.

Publikationen: SCORING: Beitrag in Fachzeitschrift/ZeitungSCORING: ZeitschriftenaufsatzForschungBegutachtung

Harvard

Wen, S, Schwarz, J, Niculescu, D, Dinu, C, Bauer, CK, Hirdes, W & Boehm, U 2008, 'Functional characterization of genetically labeled gonadotropes.', ENDOCRINOLOGY, Jg. 149, Nr. 6, 6, S. 2701-2711. <http://www.ncbi.nlm.nih.gov/pubmed/18325995?dopt=Citation>

APA

Wen, S., Schwarz, J., Niculescu, D., Dinu, C., Bauer, C. K., Hirdes, W., & Boehm, U. (2008). Functional characterization of genetically labeled gonadotropes. ENDOCRINOLOGY, 149(6), 2701-2711. [6]. http://www.ncbi.nlm.nih.gov/pubmed/18325995?dopt=Citation

Vancouver

Wen S, Schwarz J, Niculescu D, Dinu C, Bauer CK, Hirdes W et al. Functional characterization of genetically labeled gonadotropes. ENDOCRINOLOGY. 2008;149(6):2701-2711. 6.

Bibtex

@article{dc96ec5264d94f1b9311825c6f60acbb,
title = "Functional characterization of genetically labeled gonadotropes.",
abstract = "Gonadotropes are crucial in the control of reproduction but difficult to isolate for functional analysis due to their scattered distribution in the anterior pituitary gland. We devised a binary genetic approach, and describe a new mouse model that allows visualization and manipulation of gonadotrope cells. Using gene targeting in embryonic stem cells, we generated mice in which Cre recombinase is coexpressed with the GnRH receptor, which is expressed in gonadotrope cells. We show that we can direct Cre-mediated recombination of a yellow fluorescent protein reporter allele specifically in gonadotropes within the anterior pituitary of these knock-in mice. More than 99% of gonadotropin-containing cells were labeled by yellow fluorescent protein fluorescence and readily identifiable in dissociated pituitary cell culture, allowing potentially unbiased sampling from the gonadotrope population. Using electrophysiology, calcium imaging, and the study of secretion on the single-cell level, the functional properties of gonadotropes isolated from male mice were analyzed. Our studies demonstrate a significant heterogeneity in the resting properties of gonadotropes and their responses to GnRH. About 50% of gonadotropes do not exhibit secretion of LH or FSH. Application of GnRH induced a broad range of both electrophysiological responses and increases in the intracellular calcium concentration. Our mouse model will also be able to direct expression of other Cre recombination-dependent reporter genes to gonadotropes and, therefore, represents a versatile new tool in the understanding of gonadotrope biology.",
author = "Shuping Wen and J{\"u}rgen Schwarz and Dragos Niculescu and Crenguta Dinu and Bauer, {Christiane K.} and Wiebke Hirdes and Ulrich Boehm",
year = "2008",
language = "Deutsch",
volume = "149",
pages = "2701--2711",
journal = "ENDOCRINOLOGY",
issn = "0013-7227",
publisher = "The Endocrine Society",
number = "6",

}

RIS

TY - JOUR

T1 - Functional characterization of genetically labeled gonadotropes.

AU - Wen, Shuping

AU - Schwarz, Jürgen

AU - Niculescu, Dragos

AU - Dinu, Crenguta

AU - Bauer, Christiane K.

AU - Hirdes, Wiebke

AU - Boehm, Ulrich

PY - 2008

Y1 - 2008

N2 - Gonadotropes are crucial in the control of reproduction but difficult to isolate for functional analysis due to their scattered distribution in the anterior pituitary gland. We devised a binary genetic approach, and describe a new mouse model that allows visualization and manipulation of gonadotrope cells. Using gene targeting in embryonic stem cells, we generated mice in which Cre recombinase is coexpressed with the GnRH receptor, which is expressed in gonadotrope cells. We show that we can direct Cre-mediated recombination of a yellow fluorescent protein reporter allele specifically in gonadotropes within the anterior pituitary of these knock-in mice. More than 99% of gonadotropin-containing cells were labeled by yellow fluorescent protein fluorescence and readily identifiable in dissociated pituitary cell culture, allowing potentially unbiased sampling from the gonadotrope population. Using electrophysiology, calcium imaging, and the study of secretion on the single-cell level, the functional properties of gonadotropes isolated from male mice were analyzed. Our studies demonstrate a significant heterogeneity in the resting properties of gonadotropes and their responses to GnRH. About 50% of gonadotropes do not exhibit secretion of LH or FSH. Application of GnRH induced a broad range of both electrophysiological responses and increases in the intracellular calcium concentration. Our mouse model will also be able to direct expression of other Cre recombination-dependent reporter genes to gonadotropes and, therefore, represents a versatile new tool in the understanding of gonadotrope biology.

AB - Gonadotropes are crucial in the control of reproduction but difficult to isolate for functional analysis due to their scattered distribution in the anterior pituitary gland. We devised a binary genetic approach, and describe a new mouse model that allows visualization and manipulation of gonadotrope cells. Using gene targeting in embryonic stem cells, we generated mice in which Cre recombinase is coexpressed with the GnRH receptor, which is expressed in gonadotrope cells. We show that we can direct Cre-mediated recombination of a yellow fluorescent protein reporter allele specifically in gonadotropes within the anterior pituitary of these knock-in mice. More than 99% of gonadotropin-containing cells were labeled by yellow fluorescent protein fluorescence and readily identifiable in dissociated pituitary cell culture, allowing potentially unbiased sampling from the gonadotrope population. Using electrophysiology, calcium imaging, and the study of secretion on the single-cell level, the functional properties of gonadotropes isolated from male mice were analyzed. Our studies demonstrate a significant heterogeneity in the resting properties of gonadotropes and their responses to GnRH. About 50% of gonadotropes do not exhibit secretion of LH or FSH. Application of GnRH induced a broad range of both electrophysiological responses and increases in the intracellular calcium concentration. Our mouse model will also be able to direct expression of other Cre recombination-dependent reporter genes to gonadotropes and, therefore, represents a versatile new tool in the understanding of gonadotrope biology.

M3 - SCORING: Zeitschriftenaufsatz

VL - 149

SP - 2701

EP - 2711

JO - ENDOCRINOLOGY

JF - ENDOCRINOLOGY

SN - 0013-7227

IS - 6

M1 - 6

ER -