Effects of α-enolase gene silencing on reproductive-related hormone receptor expression and steroid hormone synthesis of primary granulosa cells from goose F1 follicles

Enolases are enzymes in the glycolytic pathway, which catalyse the reversible conversion of D-2-phosphoglycerate into phosphoenol pyruvate in the second half of the pathway. In this research, the effects of α-enolase (ENO1) on steroid reproductive-related hormone receptor expression and on hormone s...

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Autores principales: Ji Hong, Niu Chun-Yang, Zhang Hong-Liang, Guo Jing-Ru, Zhen Li, Lian Shuai, Yang Chuang, Yang Huan-Min, Wang Jian-Fa
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Lenguaje:EN
Publicado: Sciendo 2020
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Acceso en línea:https://doaj.org/article/cd02c931454c44af967d8e84e98b1784
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spelling oai:doaj.org-article:cd02c931454c44af967d8e84e98b17842021-12-05T14:11:08ZEffects of α-enolase gene silencing on reproductive-related hormone receptor expression and steroid hormone synthesis of primary granulosa cells from goose F1 follicles2450-860810.2478/jvetres-2020-0008https://doaj.org/article/cd02c931454c44af967d8e84e98b17842020-01-01T00:00:00Zhttps://doi.org/10.2478/jvetres-2020-0008https://doaj.org/toc/2450-8608Enolases are enzymes in the glycolytic pathway, which catalyse the reversible conversion of D-2-phosphoglycerate into phosphoenol pyruvate in the second half of the pathway. In this research, the effects of α-enolase (ENO1) on steroid reproductive-related hormone receptor expression and on hormone synthesis of primary granulosa cells from goose F1 follicles were studied.Ji HongNiu Chun-YangZhang Hong-LiangGuo Jing-RuZhen LiLian ShuaiYang ChuangYang Huan-MinWang Jian-FaSciendoarticlezi goosefollicular granulosa cellα-enolasehormone receptorhormoneVeterinary medicineSF600-1100ENJournal of Veterinary Research, Vol 64, Iss 1, Pp 141-149 (2020)
institution DOAJ
collection DOAJ
language EN
topic zi goose
follicular granulosa cell
α-enolase
hormone receptor
hormone
Veterinary medicine
SF600-1100
spellingShingle zi goose
follicular granulosa cell
α-enolase
hormone receptor
hormone
Veterinary medicine
SF600-1100
Ji Hong
Niu Chun-Yang
Zhang Hong-Liang
Guo Jing-Ru
Zhen Li
Lian Shuai
Yang Chuang
Yang Huan-Min
Wang Jian-Fa
Effects of α-enolase gene silencing on reproductive-related hormone receptor expression and steroid hormone synthesis of primary granulosa cells from goose F1 follicles
description Enolases are enzymes in the glycolytic pathway, which catalyse the reversible conversion of D-2-phosphoglycerate into phosphoenol pyruvate in the second half of the pathway. In this research, the effects of α-enolase (ENO1) on steroid reproductive-related hormone receptor expression and on hormone synthesis of primary granulosa cells from goose F1 follicles were studied.
format article
author Ji Hong
Niu Chun-Yang
Zhang Hong-Liang
Guo Jing-Ru
Zhen Li
Lian Shuai
Yang Chuang
Yang Huan-Min
Wang Jian-Fa
author_facet Ji Hong
Niu Chun-Yang
Zhang Hong-Liang
Guo Jing-Ru
Zhen Li
Lian Shuai
Yang Chuang
Yang Huan-Min
Wang Jian-Fa
author_sort Ji Hong
title Effects of α-enolase gene silencing on reproductive-related hormone receptor expression and steroid hormone synthesis of primary granulosa cells from goose F1 follicles
title_short Effects of α-enolase gene silencing on reproductive-related hormone receptor expression and steroid hormone synthesis of primary granulosa cells from goose F1 follicles
title_full Effects of α-enolase gene silencing on reproductive-related hormone receptor expression and steroid hormone synthesis of primary granulosa cells from goose F1 follicles
title_fullStr Effects of α-enolase gene silencing on reproductive-related hormone receptor expression and steroid hormone synthesis of primary granulosa cells from goose F1 follicles
title_full_unstemmed Effects of α-enolase gene silencing on reproductive-related hormone receptor expression and steroid hormone synthesis of primary granulosa cells from goose F1 follicles
title_sort effects of α-enolase gene silencing on reproductive-related hormone receptor expression and steroid hormone synthesis of primary granulosa cells from goose f1 follicles
publisher Sciendo
publishDate 2020
url https://doaj.org/article/cd02c931454c44af967d8e84e98b1784
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