ScienceDaily: Latest Science News
Breaking science news and articles on global warming, extrasolar planets, stem cells, bird flu, autism, nanotechnology, dinosaurs, evolution -- the latest discoveries in astronomy, anthropology, biology, chemistry, climate and environment, computers, engineering, health and medicine, math, physics, psychology, technology, and more -- from the world's leading universities and research organizations.
Order in the chaos of a cell membrane
http://feeds.sciencedaily.com/~r/sciencedaily/~3/Tel7Ws9r9ic/130301051615.htm
Mar 1st 2013, 10:16
Mar. 1, 2013 — An explanation has been proposed for the way in which ordered structures arise in cell membranes. Scientists from the Max Planck Institute of Colloids and Interfaces in Potsdam have discovered how complex compounds of sugar and lipids -- known as glycolipids -- order themselves in cell membranes into rafts, namely small, highly organised domains. The arrangement of glycolipids on the surface of plant and animal cell membranes regulates numerous cellular processes. If errors occur in this process, diseases like PNH and BSE can arise.
Lipids, i.e. fats and fat-like substances, arise all over the human body. They are the body's most important energy storage system and are crucial structural components of cell membranes. Compounds formed from complex sugar components and fats are known as glycolipids. Those are vital communicators found in the membranes of every human cell, and constantly exchange information about the type and state of the cell. Numerous metabolic processes depend on glycolipids and their recognition. Even the immune system identifies and combats many pathogens using certain sugar structures located on the surface of the pathogen cells.
Glycosylphosphatidylinositols (GPIs) belong to the group of natural glycolipids. They are found on the surface of plant and animal cell membranes, where they appear either as free molecules or as membrane anchors for various proteins. The arrangement in clusters and their preference for denser and, in part, highly-organised micro-domains in the membrane are seen as essential for the effective functioning of a cell. These minuscule clusters are extremely important for the regulation of many cellular processes, and their malfunction can have very serious consequences. For example, it has been proven that the accumulation, missing or alteration of GPI-anchored molecules can trigger the development of serious diseases like BSE and paroxysmal nocturnal hemoglobinuria (PNH). Scientists at the Max Planck Institute of Colloids and Interfaces in Golm near Potsdam have gained new insight into how GPIs structure themselves in membranes.
Crystalline lipid areas never previously observed in membranes
It was assumed up to now that the arrangement of the GPIs in clusters and rafts was determined by the water-repelling section of the glycolipids embedded in the cell membrane. The chemical structure of the hydrophobic ends is actually responsible for strong interactions with similarly rigid neighbouring molecules. If the number of the molecules that interact with each other is big enough, rigid and partly organised domains may arise like icebergs on the surface of the ocean.
Cristina Stefaniu and her colleagues have now discovered that, in addition to the hydrophobic ends, the large GPI head groups, which contain sugar, mainly contribute to the formation of the rafts. This means that the hydrophylic part of the molecule is able to build strong interactions with the neighbouring GPI molecules. This part of the molecule is located precisely on the boundary between the membrane surface and the liquid medium. "The interactions between neighbouring GPI molecules result in the formation of crystalline orders that have not previously been observed for other membrane lipids," says Cristina Stefaniu.
Hydrogen bonds connect the hydrophylic head groups
The scientists reached this new conclusion about the order in membranes by studying a model molecule. This is a GPI fragment that was synthesised by the groups headed by Peter Seeberger and Daniel Varón Silva and that imitates the behaviour of entire GPIs. It forms a very thin film, just one molecule thick, on the surface of the water. This so-called monolayer is the simplified model of a half cell membrane which the researchers analysed using synchrotron x-ray scattering. "Surprisingly, the highly ordered structure in the GPI monolayer is predominantly determined by the bulky hydrophilic head groups that connect through hydrogen bonds," says Stefaniu. A hydrogen bond is a relatively weak chemical bond and usually links two molecules through the bonding of a hydrogen atom from one molecule with an oxygen or nitrogen atom from the other molecule. Thus the monolayers of the GPI fragment are characterised by both the order of the hydrophilic lipid chains and the crystalline arrangement of the GPI head groups.
"The molecular lattices observed here have not yet been described for lipid monolayers," says Cristina Stefaniu. "A similar order forms in lipid bilayers if they are stored at temperatures close to zero degrees Celsius." The strong interactions between the head groups can only be disrupted and the molecular lattice destroyed through the addition of a highly concentrated urea solution, which breaks the hydrogen bonds, eliminates the strong interactions of the head groups and destroys the molecular lattice. In addition, the scientists proved that ordered clusters can arise in mixtures of the GPI fragment with typical membrane lipids, which only form unordered films. Thus, the GPIs are able to generate order in the chaos of a membrane. This special skill could be very important for the GPI interactions in real cell membranes.
Share this story on Facebook, Twitter, and Google:
Other social bookmarking and sharing tools:
Story Source:
The above story is reprinted from materials provided by Max Planck Institute of Colloids and Interfaces.
Note: Materials may be edited for content and length. For further information, please contact the source cited above.
Journal Reference:
Cristina Stefaniu, Ivan Vilotijevic, Mark Santer, Daniel Varón Silva, Gerald Brezesinski, Peter H. Seeberger. Subgel Phase Structure in Monolayers of Glycosylphosphatidylinositol Glycolipids. Angewandte Chemie International Edition, 2012; 51 (51): 12874 DOI: 10.1002/anie.201205825
Note: If no author is given, the source is cited instead.
Disclaimer: Views expressed in this article do not necessarily reflect those of ScienceDaily or its staff.
This entry passed through the Full-Text RSS service — if this is your content and you're reading it on someone else's site, please read the FAQ at fivefilters.org/content-only/faq.php#publishers. Five Filters recommends: Eyes Like Blank Discs - The Guardian's Steven Poole On George Orwell's Politics And The English Language.
You are receiving this email because you subscribed to this feed at http://blogtrottr.com
If you no longer wish to receive these emails, you can unsubscribe here:
http://blogtrottr.com/unsubscribe/cz0/tSbHWJ
订阅:
博文评论 (Atom)
博客归档
-
▼
2013
(16909)
-
▼
三月
(1500)
- 网易科技频道IT业界新闻: 2013年将是智能手表爆发之年
- 网易科技频道IT业界新闻: 苹果诉三星专利侵权索赔仍超10亿美元
- 科技要闻-新浪科技: 全幅旗舰领跑 尼康D800E售价20400元
- 科技要闻-新浪科技: 优质便携长焦机 索尼HX30报价1959元
- 科技要闻-新浪科技: 双处理器APS单反 佳能7D售价7720元
- 网易科技频道IT业界新闻: 富士康如何成为庞大转包企业
- 科技要闻-新浪科技: 性能均衡热销入门机 佳能600D套机售4100元
- 科技要闻-新浪科技: 热门中端一镜走天下 尼康D7000套机10680元
- 科技要闻-新浪科技: 强悍性能不输单反 索尼单电A77套机9300元
- ScienceDaily: Latest Science News: New clues about...
- 手机资讯-新浪科技: HTC Butterfly领衔 1080P超高清手机盘点
- 手机资讯-新浪科技: 全部1.5GHz起步 高主频智能热销手机推荐
- 手机资讯-新浪科技: 苹果/小米/三星居多 北京地铁手机大曝光
- 网易科技频道IT业界新闻: iPad mini商标申请遭拒
- 网易科技频道IT业界新闻: 美的集团整体上市 3%股份激励高管
- 网易科技频道IT业界新闻: IT峰会三巨头“互侃”移动互联网
- 网易科技频道IT业界新闻: 美的通过换股实现整体上市
- 网易科技频道IT业界新闻: 机构称3D打印尚不具投资价值
- 网易科技频道IT业界新闻: 美的集团整体上市收官 股权结构将变
- 网易科技频道IT业界新闻: 香港政府创业扶持机构成型关键:创业力场
- 网易科技频道IT业界新闻: 惠普股价逆袭近60% 战略转型仍属未了局
- 网易科技频道IT业界新闻: 美的电器被母公司吸收合并 换股价格溢价68%
- 网易科技频道要闻: 评论:微信国际化为什么会失败
- 科技要闻-新浪科技: 工信部部长苗圩:我国宽带与国际水平差距拉大
- 科技要闻-新浪科技: 常小兵:联通按自己的战略方向去争取4G牌照
- 焦点新闻-新浪科技: 工信部部长苗圩:我国宽带与国际水平差距拉大
- 焦点新闻-新浪科技: 北京电信向智能机用户送8.9G云存储空间
- 焦点新闻-新浪科技: 常小兵:联通按自己的战略方向去争取4G牌照
- 网易科技频道要闻: 微信收费论甚嚣尘上 免费互联网模式将死
- 网易科技频道IT业界新闻: 中关村助推创业者实现中国梦
- 网易科技频道IT业界新闻: 东软2012年实现营收69.6亿元 同比增21.02%
- 科技要闻-新浪科技: 北京电信向智能机用户送8.9G云存储空间
- 科技要闻-新浪科技: 常小兵称联通有强大3G网络:4G算什么
- Solidot: MIUI V5系统升级致大量小米1代手机变砖
- 焦点新闻-新浪科技: 常小兵称联通有强大3G网络:4G算什么
- Solidot: NASA预告片将在《星际迷航:进入黑暗》上播出
- Solidot: 狒狒的笑也会传染
- 焦点新闻-新浪科技: 酷派郭德英:手机行业进入微利时代
- 科技要闻-新浪科技: 酷派郭德英:手机行业进入微利时代
- Confirm your unsubscription from '焦点新闻-新浪科技'
- Confirm your unsubscription from '焦点新闻-新浪科技'
- Confirm your unsubscription from '焦点新闻-新浪科技'
- 网易科技频道要闻: 周末要闻回顾:工信部正协调运营商对微信收费
- 焦点新闻-新浪科技: 美的千亿重组完成:集团将整体上市
- 网易科技频道IT业界新闻: 美的集团整体上市启幕 吸收合并美的电器
- 科技要闻-新浪科技: 快讯:美的集团拟实现整体上市
- 互联网新闻-新浪科技: IT领袖峰会盘点:布道、切磋与暗战
- 焦点新闻-新浪科技: 快讯:美的集团拟实现整体上市
- 焦点新闻-新浪科技: IT大佬论道移动互联网:谁是未来操作系统老大
- 焦点新闻-新浪科技: IT领袖峰会大佬表情:布道、请教与斡旋
- 网易科技频道IT业界新闻: 富士康现人事动荡:三星份额增长令鸿海遇天花板
- 网易科技频道IT业界新闻: “鸿夏恋”败局已现:郭台铭贪多导致功败垂成
- Confirm your unsubscription from '网易科技频道IT业界新闻'
- Confirm your unsubscription from '网易科技频道IT业界新闻'
- 焦点新闻-新浪科技: 联通常小兵回应微信收费:违背经济规律难长远
- 网易科技频道要闻: 评论:善待富士康就是善待工人
- 网易科技频道IT业界新闻: 传联想将推移动处理器:用于旗下智能机和平板
- 互联网新闻-新浪科技: 联通常小兵回应微信收费:违背经济规律难长远
- 焦点新闻-新浪科技: 美国专利局或拒绝苹果iPad mini商标申请
- 焦点新闻-新浪科技: 股东集体诉黑莓隐瞒竞争劣势 遭法院驳回
- 网易科技频道要闻: 详解百度激进国际化:渠道先行
- 网易科技频道IT业界新闻: 苹果申请iPad mini商标被美国专利商标局拒绝
- 网易科技频道IT业界新闻: 发改委副司长伍浩:加强信息技术产业链互动
- 焦点新闻-新浪科技: 传联想将扩大芯片设计业务 效仿华为海思
- 焦点新闻-新浪科技: 黑莓称将推低端黑莓10手机 不出售硬件业务
- 网易科技频道IT业界新闻: 美研发迷你手机充电器:可供待机数个小时
- 网易科技频道IT业界新闻: 消息称苹果4月推iOS游戏手柄
- 网易科技频道IT业界新闻: 评论:善待富士康 就是善待工人
- ScienceDaily: Latest Science News: Multi-toxin bio...
- Confirm your unsubscription from '互联网新闻-新浪科技'
- Confirm your unsubscription from 'Solidot'
- Confirm your unsubscription from 'Solidot'
- Confirm your unsubscription from '科技要闻-新浪科技'
- Confirm your unsubscription from '焦点新闻-新浪科技'
- Confirm your unsubscription from 'Solidot'
- ScienceDaily: Latest Science News: Artificial sple...
- 互联网新闻-新浪科技: 深圳IT领袖峰会开幕 李彦宏马化腾上演高峰对话
- 焦点新闻-新浪科技: 深圳IT领袖峰会开幕 李彦宏马化腾上演高峰对话
- 焦点新闻-新浪科技: 专家:苹果Logo缺的一角是感恩之心
- Solidot: ZFS on Linux项目发布v0.6.1版
- Solidot: WPS for linux发布Beta版
- Solidot: 朝鲜对韩国宣战
- 互联网新闻-新浪科技: 京东商城正式更新域名及Logo 推出吉祥物形象
- 焦点新闻-新浪科技: 京东商城正式更新域名及Logo 推出吉祥物形象
- 焦点新闻-新浪科技: 新版迅雷看看支持新一代高清标准H.265
- Confirm your unsubscription from '焦点新闻-新浪科技'
- 科技要闻-新浪科技: 新版迅雷看看支持新一代高清标准H.265
- Solidot: 比特币总币值高于20个国家的货币总值
- 互联网新闻-新浪科技: 新版迅雷看看支持新一代高清标准H.265
- 焦点新闻-新浪科技: 移动广告业需向移动游戏开发商学习的三件事
- Solidot: Northfield/Norwood:Wayland/Weston的新fork
- 互联网新闻-新浪科技: 《创事记》周末推荐阅读(3月30日)
- 互联网新闻-新浪科技: 移动广告业需向移动游戏开发商学习的三件事
- 焦点新闻-新浪科技: 《创事记》周末推荐阅读(3月30日)
- 科技要闻-新浪科技: 《创事记》周末推荐阅读(3月30日)
- 网易科技频道IT业界新闻: 三星苹果的微妙合作关系:爱恨交加合作或告终
- Solidot: 巧用 CSS 文件,愚人节恶搞
- 互联网新闻-新浪科技: 后工业时代的管理:靠用心而非仅靠制度
- 焦点新闻-新浪科技: 后工业时代的管理:靠用心而非仅靠制度
- 焦点新闻-新浪科技: 3D打印概念股大跌说明了什么?
-
▼
三月
(1500)
没有评论:
发表评论