久久一区二区三区精品-久久一区二区明星换脸-久久一区二区精品-久久一区不卡中文字幕-91精品国产爱久久久久久-91精品国产福利尤物免费

SAT閱讀材料 gene regulatory network

雕龍文庫(kù) 分享 時(shí)間: 收藏本文

SAT閱讀材料 gene regulatory network

  A gene regulatory network or genetic regulatory network is a collection of DNA segments in a cell which interact with each other and with other substances in the cell, thereby governing the rates at which genes in the network are transcribed into mRNA. In general, each mRNA molecule goes on to make a specific protein . In some cases this protein will be structural, and will accumulate at the cell-wall or within the cell to give it particular structural properties. In other cases the protein will be an enzyme; a micro-machine that catalyses a certain reaction, such as the breakdown of a food source or toxin. Some proteins though serve only to activate other genes, and these are the transcription factors that are the main players in regulatory networks or cascades. By binding to the promoter region at the start of other genes they turn them on, initiating the production of another protein, and so on. Some transcription factors are inhibitory.

  In single-celled organisms regulatory networks respond to the external environment, optimising the cell at a given time for survival in this environment. Thus a yeast cell, finding itself in a sugar solution, will turn on genes to make enzymes that process the sugar to alcohol. This process, which we associate with wine-making, is how the yeast cell makes its living, gaining energy to multiply, which under normal circumstances would enhance its survival prospects.

  In multicellular animals the same principle has been put in the service of gene cascades that control body-shape. Each time a cell divides, two cells result which, although they contain the same genome in full, can differ in which genes are turned on and making proteins. Sometimes a self-sustaining feedback loop ensures that a cell maintains its identity and passes it on. Less understood is the mechanism of epigenetics by which chromatin modification may provide cellular memory by blocking or allowing transcription. A major feature of multicellular animals is the use of morphogen gradients, which in effect provide a positioning system that tells a cell where in the body it is, and hence what sort of cell to become. A gene that is turned on in one cell may make a product that leaves the cell and diffuses through adjacent cells, entering them and turning on genes only when it is present above a certain threshold level. These cells are thus induced into a new fate, and may even generate other morphogens that signal back to the original cell. Over longer distances morphogens may use the active process of signal transduction. Such signalling controls embryogenesis, the building of a body plan from scratch through a series of sequential steps. They also control maintain adult bodies through feedback processes, and the loss of such feedback because of a mutation can be responsible for the cell proliferation that is seen in cancer. In parallel with this process of building structure, the gene cascade turns on genes that make structural proteins that give each cell the physical properties it needs. It has been suggested that, because biological molecular interactions are intrinsically stochastic, gene networks are the result of cellular processes and not their cause. However, recent experimental evidence has favored the attractor view of cell fates.

  

  A gene regulatory network or genetic regulatory network is a collection of DNA segments in a cell which interact with each other and with other substances in the cell, thereby governing the rates at which genes in the network are transcribed into mRNA. In general, each mRNA molecule goes on to make a specific protein . In some cases this protein will be structural, and will accumulate at the cell-wall or within the cell to give it particular structural properties. In other cases the protein will be an enzyme; a micro-machine that catalyses a certain reaction, such as the breakdown of a food source or toxin. Some proteins though serve only to activate other genes, and these are the transcription factors that are the main players in regulatory networks or cascades. By binding to the promoter region at the start of other genes they turn them on, initiating the production of another protein, and so on. Some transcription factors are inhibitory.

  In single-celled organisms regulatory networks respond to the external environment, optimising the cell at a given time for survival in this environment. Thus a yeast cell, finding itself in a sugar solution, will turn on genes to make enzymes that process the sugar to alcohol. This process, which we associate with wine-making, is how the yeast cell makes its living, gaining energy to multiply, which under normal circumstances would enhance its survival prospects.

  In multicellular animals the same principle has been put in the service of gene cascades that control body-shape. Each time a cell divides, two cells result which, although they contain the same genome in full, can differ in which genes are turned on and making proteins. Sometimes a self-sustaining feedback loop ensures that a cell maintains its identity and passes it on. Less understood is the mechanism of epigenetics by which chromatin modification may provide cellular memory by blocking or allowing transcription. A major feature of multicellular animals is the use of morphogen gradients, which in effect provide a positioning system that tells a cell where in the body it is, and hence what sort of cell to become. A gene that is turned on in one cell may make a product that leaves the cell and diffuses through adjacent cells, entering them and turning on genes only when it is present above a certain threshold level. These cells are thus induced into a new fate, and may even generate other morphogens that signal back to the original cell. Over longer distances morphogens may use the active process of signal transduction. Such signalling controls embryogenesis, the building of a body plan from scratch through a series of sequential steps. They also control maintain adult bodies through feedback processes, and the loss of such feedback because of a mutation can be responsible for the cell proliferation that is seen in cancer. In parallel with this process of building structure, the gene cascade turns on genes that make structural proteins that give each cell the physical properties it needs. It has been suggested that, because biological molecular interactions are intrinsically stochastic, gene networks are the result of cellular processes and not their cause. However, recent experimental evidence has favored the attractor view of cell fates.

  

信息流廣告 競(jìng)價(jià)托管 招生通 周易 易經(jīng) 代理招生 二手車(chē) 網(wǎng)絡(luò)推廣 自學(xué)教程 招生代理 旅游攻略 非物質(zhì)文化遺產(chǎn) 河北信息網(wǎng) 石家莊人才網(wǎng) 買(mǎi)車(chē)咨詢(xún) 河北人才網(wǎng) 精雕圖 戲曲下載 河北生活網(wǎng) 好書(shū)推薦 工作計(jì)劃 游戲攻略 心理測(cè)試 石家莊網(wǎng)絡(luò)推廣 石家莊招聘 石家莊網(wǎng)絡(luò)營(yíng)銷(xiāo) 培訓(xùn)網(wǎng) 好做題 游戲攻略 考研真題 代理招生 心理咨詢(xún) 游戲攻略 興趣愛(ài)好 網(wǎng)絡(luò)知識(shí) 品牌營(yíng)銷(xiāo) 商標(biāo)交易 游戲攻略 短視頻代運(yùn)營(yíng) 秦皇島人才網(wǎng) PS修圖 寶寶起名 零基礎(chǔ)學(xué)習(xí)電腦 電商設(shè)計(jì) 職業(yè)培訓(xùn) 免費(fèi)發(fā)布信息 服裝服飾 律師咨詢(xún) 搜救犬 Chat GPT中文版 語(yǔ)料庫(kù) 范文網(wǎng) 工作總結(jié) 二手車(chē)估價(jià) 情侶網(wǎng)名 愛(ài)采購(gòu)代運(yùn)營(yíng) 情感文案 古詩(shī)詞 邯鄲人才網(wǎng) 鐵皮房 衡水人才網(wǎng) 石家莊點(diǎn)痣 微信運(yùn)營(yíng) 養(yǎng)花 名酒回收 石家莊代理記賬 女士發(fā)型 搜搜作文 石家莊人才網(wǎng) 銅雕 關(guān)鍵詞優(yōu)化 圍棋 chatGPT 讀后感 玄機(jī)派 企業(yè)服務(wù) 法律咨詢(xún) chatGPT國(guó)內(nèi)版 chatGPT官網(wǎng) 勵(lì)志名言 兒童文學(xué) 河北代理記賬公司 教育培訓(xùn) 游戲推薦 抖音代運(yùn)營(yíng) 朋友圈文案 男士發(fā)型 培訓(xùn)招生 文玩 大可如意 保定人才網(wǎng) 黃金回收 承德人才網(wǎng) 石家莊人才網(wǎng) 模型機(jī) 高度酒 沐盛有禮 公司注冊(cè) 造紙術(shù) 唐山人才網(wǎng) 沐盛傳媒
主站蜘蛛池模板: xxxx肥婆性bbbb欧美 | 成年女人免费看片 | 狠狠色婷婷丁香综合久久韩国 | 免费99热在线观看 | 草草草在线观看 | 91高清免费国产自产 | 久久国产精品自线拍免费 | 亚洲天堂毛片 | 草久在线观看 | 欧美做爰免费大片在线观看 | 欧美一级黄视频 | 欧美综合一区二区三区 | 国产成人精品男人免费 | 久久无码av三级 | 一区二区三区日韩精品 | 成人免费观看国产高清 | 成人精品一区二区不卡视频 | 欧美激情综合亚洲一二区 | 精品欧美小视频在线观看 | 欧美成人性色xxxx视频 | 久久精品毛片 | 99综合在线 | 国产精品黄页网站在线播放免费 | 久久中文字幕久久久久 | 69视频在线观看xxxxx | 美女一丝不佳一级毛片香蕉 | 91一区二区在线观看精品 | 91精品宅男在线观看 | 欧美成人在线网站 | 久草资源免费 | 美女视频黄视大全视频免费网址 | 日韩欧美亚洲 | 免费乱码中文字幕网站 | www亚洲免费| 91精品久久久久久久久久 | 99看视频| 亚洲人成一区二区三区 | 日本一区二区三区高清福利视频 | 欧美叫床戏做爰无遮挡 | 呦女亚洲一区精品 | 久久精品免视着国产成人 |