| 영문 | hormone | 한글 | 호르몬 |
|---|---|---|---|
| 설명 | 호르몬이란 특정한 내분비선에서 생성, 저장되어 있다가, 관류하는 혈액 중으로 분비된 다음 혈액에 실려 멀리 떨어져 있는 표적세포(호르몬이 작용을 나타내는 세포)에 이르러 그곳에서 특정한 기능을 발휘하는 물질을 말한다. 내분비샘이 아니더라도 어느 세포나 세포군에서 세포외액 중으로 분비된 다음 다른 세포에 가서 세포의 기능을 변동시키는 물질의 일부도 호르몬의 범주에 포함시키고 있으며 이들을 특별히 국소호르몬이라 부른다(예-아세틸콜린, 아드레날린, 콜레시스토키닌 등). 이에 비해서 특정 내분비샘에서 혈중으로 분비되는 진정한 의미의 호르몬들을 일반호르몬이라고 부른다. 호르몬을 흔히 3종의 무리로 분류를 하는데 아드레날린이나 thyroxine과 같이 아미노산의 유도체로 된 호르몬들(amine derivative), 많은 아미노산을 재료로 만들어졌거나 당단백으로 된 단백호르몬(peptide hormone), 그리고 콜레스테롤을 재료로 만들어진 지방호르몬(steroid hormone) 등으로 구분되며 이들은 대체로 종류에 따라 작용메커니즘을 달리하고 있다. |
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| 영문 | luteinizing hormone(LH) | 한글 | 황체형성호르몬 |
|---|---|---|---|
| 설명 | 여성의 월경은 정해진 순서에 의해 일어나게 된다. 먼저 난포자극호르몬이 뇌에서 분비되어 여성의 난소를 자극하게 되면 난포가 자극받아 난포호르몬(에스트로젠)을 분비하게 되고 이것은 다시 되먹이기 메커니즘 의해 뇌에 작용을 하여 황체화호르몬이 뇌에서 분비되고 이것이 이른바 절정에 이르렀을 때, 난포에서 배란이 일어나게 된다. 이후 난포는 황체로 변하게 되며, 배란된 난자가 수정되지 아니하면, 황체는 황체호르몬(프로게스테론)을 분비한 뒤 퇴화되고 곧 이어 월경이 일어나게 된다. 이 일은 정상적인 대부분의 여성에서 28일을 주기로 일어나며, 대개 황체화호르몬 절정 이후 마지막은 14일로 일정하다고 한다. |
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| TGF | T-cell growth factor; transforming growth factor; tuboglomerular feedback; tumor growth factor |
|---|---|
| MRF | Markov random field; medical record file; melanocyte-[stimulating hormone]-releasing factor; mesence... |
| FRP | Follicle Regulatory Protein |
| IRF | idiopathic retroperitoneal fibrosis; impulse response function; interferon regulatory factor; intern... |
| IRTU | integrating regulatory transcription unit |
| viral regulatory proteins | Proteins which regulate the rate of transcription of viral structural genes. (12 Dec 1998) |
|---|---|
| regulatory albuminuria | Transitory albuminuria occurring after unusual physical exertion. (05 Mar 2000) |
| regulatory cell proliferation kinase | <enzyme> Involved in mitosis regulation; has characteristics of serine/threonine and tyrosine kinases; isolated from saccharomyces cerevisiae; genbank l08909 Registry number: EC 2.7.1.- Synonym: rpk1 protein, rpk1 gene product (26 Jun 1999) |
| regulatory enzyme | <biochemistry> An enzyme that regulatescertain functions due to its ability to undergoa change in its catalytic activity through modification of its structure. (09 Oct 1997) |
| regulatory gene | A gene that codes for a repressor protein. (09 Oct 1997) |
| regulatory region | <molecular biology> A DNA base sequence that controls gene expression. (14 Oct 1997) |
| regulatory regions or sequences | A DNA base sequence that controls gene expression. (05 Mar 2000) |
| regulatory sequence | <molecular biology> DNA sequence to which regulatory molecules such as promotors or enhancers bind, thereby altering the expression of the adjacent gene. (18 Nov 1997) |
| regulatory sequences, nucleic acid | DNA sequences involved in regulating the expression of other genes. (12 Dec 1998) |
| regulatory T-cell | <immunology> Vague term for any class of T lymphocyte not directly involved in the effector side of immunity, but involved in controlling responses and actions of other cells, especially T helper and T suppressor cells. (18 Nov 1997) |
| myogenic regulatory factors | A family of muscle-specific transcription factors which bind to DNA in control regions and thus regulate myogenesis. All members of this family contain a conserved helix-loop-helix motif which is homologous to the myc family proteins. These factors are only found in skeletal muscle. Members include the myod protein (myod protein), myogenin, myf-5, and myf-6 (also called mrf4 or herculin). (12 Dec 1998) |
| public utility regulatory policies act | (PURPA) A federal law requiring a utility to buy the power produced by a qualifying facility at a price equal to that which the utility would otherwise pay if it were to build its own power plant or buy power from another source. (05 Dec 1998) |
| sequence, regulatory | A sequence of bases in DNA that controls the expression of a gene. (12 Dec 1998) |
| receptors, pituitary hormone-regulating hormone | Cell surface receptors that bind the hypothalamic hormones regulating pituitary cell differentiation, proliferation, and hormone synthesis and release, including the pituitary-releasing and release-inhibiting hormones. The pituitary hormone-regulating hormones are also released by cells other than hypothalamic neurons, and their receptors also occur on non-pituitary cells, especially brain neurons, where their role is less well understood. Receptors for dopamine, which is a prolactin release-inhibiting hormone as well as a common neurotransmitter, are not included here. (12 Dec 1998) |
| hormones, hormone substitutes, and hormone antagonists | A collective grouping for both naturally occurring and synthetic hormones, substitutes, and antagonists. (12 Dec 1998) |