A classification of genes involved in normal and delayed male puberty.

IF 3 2区 医学 Q2 ANDROLOGY
Maleeha Akram, Syed Shakeel Raza Rizvi, Mazhar Qayyum, David J Handelsman
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引用次数: 3

Abstract

Puberty is a pivotal biological process that completes sexual maturation to achieve full reproductive capability. It is a major transformational period of life, whose timing is strongly affected by genetic makeup of the individual, along with various internal and external factors. Although the exact mechanism for initiation of the cascade of molecular events that culminate in puberty is not yet known, the process of pubertal onset involves interaction of numerous complex signaling pathways of hypothalamo-pituitary-testicular (HPT) axis. We developed a classification of the mechanisms involved in male puberty that allowed placing many genes into physiological context. These include (i) hypothalamic development during embryogenesis, (ii) synaptogenesis where gonadotropin releasing hormone (GnRH) neurons form neuronal connections with suprahypothalamic neurons, (iii) maintenance of neuron homeostasis, (iv) regulation of synthesis and secretion of GnRH, (v) appropriate receptors/proteins on neurons governing GnRH production and release, (vi) signaling molecules activated by the receptors, (vii) the synthesis and release of GnRH, (viii) the production and release of gonadotropins, (ix) testicular development, (x) synthesis and release of steroid hormones from testes, and (xi)the action of steroid hormones in downstream effector tissues. Defects in components of this system during embryonic development, childhood/adolescence, or adulthood may disrupt/nullify puberty, leading to long-term male infertility and/or hypogonadism. This review provides a list of 598 genes involved in the development of HPT axis and classified according to this schema. Furthermore, this review identifies a subset of 75 genes for which genetic mutations are reported to delay or disrupt male puberty.

Abstract Image

与正常和延迟的男性青春期有关的基因分类。
青春期是完成性成熟以获得充分生殖能力的关键生物学过程。这是生命中一个重要的转变时期,其时间受到个人基因构成以及各种内外因素的强烈影响。虽然在青春期达到高潮的分子事件级联的确切机制尚不清楚,但青春期开始的过程涉及下丘脑-垂体-睾丸(HPT)轴的许多复杂信号通路的相互作用。我们开发了一种与男性青春期有关的机制分类,允许将许多基因置于生理环境中。这些包括(i)胚胎发生期间下丘脑发育,(ii)促性腺激素释放激素(GnRH)神经元与下丘脑上神经元形成神经元连接的突触发生,(iii)神经元稳态的维持,(iv) GnRH合成和分泌的调节,(v)控制GnRH产生和释放的神经元上的适当受体/蛋白质,(vi)受体激活的信号分子,(vii) GnRH的合成和释放。(viii)促性腺激素的产生和释放,(ix)睾丸发育,(x)睾丸类固醇激素的合成和释放,(xi)类固醇激素在下游效应组织中的作用。在胚胎发育、童年/青春期或成年期间,该系统的组成部分的缺陷可能会破坏/取消青春期,导致长期男性不育和/或性腺功能减退。本文综述了参与HPT轴发育的598个基因,并根据该模式进行了分类。此外,这篇综述确定了一个由75个基因组成的子集,据报道,这些基因突变会延迟或破坏男性青春期。
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来源期刊
Asian Journal of Andrology
Asian Journal of Andrology 医学-泌尿学与肾脏学
CiteScore
4.90
自引率
3.40%
发文量
2252
审稿时长
2.2 months
期刊介绍: Fields of particular interest to the journal include, but are not limited to: -Sperm biology: cellular and molecular mechanisms- Male reproductive system: structure and function- Hormonal regulation of male reproduction- Male infertility: etiology, pathogenesis, diagnosis, treatment and prevention- Semen analysis & sperm functional assays- Sperm selection & quality and ART outcomes- Male sexual dysfunction- Male puberty development- Male ageing- Prostate diseases- Operational andrology- HIV & male reproductive tract infection- Male contraception- Environmental, lifestyle, genetic factors and male health- Male reproductive toxicology- Male sexual and reproductive health.
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