語系:
繁體中文
English
說明(常見問題)
回圖書館首頁
手機版館藏查詢
登入
回首頁
切換:
標籤
|
MARC模式
|
ISBD
The biophysics of molecular motors: ...
~
Shaevitz, Joshua William.
FindBook
Google Book
Amazon
博客來
The biophysics of molecular motors: Optical trapping studies of kinesin and RNA polymerase.
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
The biophysics of molecular motors: Optical trapping studies of kinesin and RNA polymerase./
作者:
Shaevitz, Joshua William.
面頁冊數:
200 p.
附註:
Source: Dissertation Abstracts International, Volume: 65-09, Section: B, page: 4463.
Contained By:
Dissertation Abstracts International65-09B.
標題:
Biophysics, General. -
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=3145531
ISBN:
0496044745
The biophysics of molecular motors: Optical trapping studies of kinesin and RNA polymerase.
Shaevitz, Joshua William.
The biophysics of molecular motors: Optical trapping studies of kinesin and RNA polymerase.
- 200 p.
Source: Dissertation Abstracts International, Volume: 65-09, Section: B, page: 4463.
Thesis (Ph.D.)--Stanford University, 2004.
Molecular motors, tiny protein engines, convert the chemical energy stored in a molecular bond into mechanical work. They are responsible for producing a variety of complex movements within biological cells. In the past two decades, optical trapping techniques have been developed to study the motions of these enzymes with ever increasing precision. Here, we present several optical trapping studies of single molecules of kinesin and RNA polymerase. Kinesin, the enzyme responsible for anterograde vesicle transport, moves along microtubule filaments in discrete eight-nm steps. Using a two-dimensional force clamp, we subjected individual kinesin molecules to a variety of loading and ATP conditions. This data is explained with a five-state, mechanochemical model of kinesin stepping that includes three motion-producing biochemical transitions. RNA polymerase is the enzyme responsible for the transcription of DNA into RNA. Using a new experimental assay of polymerase motion, we provide evidence for a proofreading mechanism in which RNA polymerase is able to correct mistakes in the nascent RNA. In addition, we used an optical trap as a local heater to measure the effect of changes in temperature on RNA polymerase motion. The stepping of any molecular motor is stochastic in nature and is governed by biochemical kinetics. We extend the current theory of this stochasticity to include motors which step along sequences of DNA and motors whose step size is variable.
ISBN: 0496044745Subjects--Topical Terms:
1019105
Biophysics, General.
The biophysics of molecular motors: Optical trapping studies of kinesin and RNA polymerase.
LDR
:02348nmm 2200265 4500
001
1844847
005
20051017075521.5
008
130614s2004 eng d
020
$a
0496044745
035
$a
(UnM)AAI3145531
035
$a
AAI3145531
040
$a
UnM
$c
UnM
100
1
$a
Shaevitz, Joshua William.
$3
1933031
245
1 4
$a
The biophysics of molecular motors: Optical trapping studies of kinesin and RNA polymerase.
300
$a
200 p.
500
$a
Source: Dissertation Abstracts International, Volume: 65-09, Section: B, page: 4463.
500
$a
Adviser: Steven Block.
502
$a
Thesis (Ph.D.)--Stanford University, 2004.
520
$a
Molecular motors, tiny protein engines, convert the chemical energy stored in a molecular bond into mechanical work. They are responsible for producing a variety of complex movements within biological cells. In the past two decades, optical trapping techniques have been developed to study the motions of these enzymes with ever increasing precision. Here, we present several optical trapping studies of single molecules of kinesin and RNA polymerase. Kinesin, the enzyme responsible for anterograde vesicle transport, moves along microtubule filaments in discrete eight-nm steps. Using a two-dimensional force clamp, we subjected individual kinesin molecules to a variety of loading and ATP conditions. This data is explained with a five-state, mechanochemical model of kinesin stepping that includes three motion-producing biochemical transitions. RNA polymerase is the enzyme responsible for the transcription of DNA into RNA. Using a new experimental assay of polymerase motion, we provide evidence for a proofreading mechanism in which RNA polymerase is able to correct mistakes in the nascent RNA. In addition, we used an optical trap as a local heater to measure the effect of changes in temperature on RNA polymerase motion. The stepping of any molecular motor is stochastic in nature and is governed by biochemical kinetics. We extend the current theory of this stochasticity to include motors which step along sequences of DNA and motors whose step size is variable.
590
$a
School code: 0212.
650
4
$a
Biophysics, General.
$3
1019105
690
$a
0786
710
2 0
$a
Stanford University.
$3
754827
773
0
$t
Dissertation Abstracts International
$g
65-09B.
790
1 0
$a
Block, Steven,
$e
advisor
790
$a
0212
791
$a
Ph.D.
792
$a
2004
856
4 0
$u
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=3145531
筆 0 讀者評論
館藏地:
全部
電子資源
出版年:
卷號:
館藏
1 筆 • 頁數 1 •
1
條碼號
典藏地名稱
館藏流通類別
資料類型
索書號
使用類型
借閱狀態
預約狀態
備註欄
附件
W9194361
電子資源
11.線上閱覽_V
電子書
EB
一般使用(Normal)
在架
0
1 筆 • 頁數 1 •
1
多媒體
評論
新增評論
分享你的心得
Export
取書館
處理中
...
變更密碼
登入