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本帖最后由 细胞海洋 于 2013-1-4 10:32 编辑 % O+ ^" u9 s7 t' A0 Z0 c8 D
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; f8 ~8 H& q+ N% [+ yCELL-FREE& M. ^5 m4 Q2 r- V
PROTEIN SYNTHESIS0 Z- C) I8 |( _8 C4 {" t' j; X
Edited by Manish Biyani
2 h: K( R0 {' k* dCopyright © 2012 InTech
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" M# L' U2 q8 I6 i9 `9 }+ `2 x3 BContents* Z5 n+ r3 `2 z8 t
Preface VII
. Z% \, ~, o+ j( p) ~Section 1 Fundamental Understanding and Protein Synthesis 1
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Chapter 1 Ribosomes from Trypanosomatids:
# u: d' x% D6 L, y! B8 C- @ {$ NUnique Structural and Functional Properties 3
: J% X* `4 p! _. W2 E8 P* AMaximiliano Juri Ayub, Walter J. Lapadula, Johan Hoebeke and Cristian R. Smulski" L2 |2 [' Z) q! s; P
1 O- F1 t& z2 N+ M5 P* ?5 t5 R" oSection 2 Evolution and Protein Synthesis 29
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Chapter 2 On the Emergence and Evolution
) r- t/ i, d. l; c5 f; Rof the Eukaryotic Translation Apparatus 31
' Y1 y. y. G( `- xGreco Hernández! J$ q9 H. ~1 s0 y9 C! G/ S
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Chapter 3 Evolutionary Molecular Engineering# s) H/ M5 o7 _5 X8 ]9 A$ F" q
to Efficiently Direct in vitro Protein Synthesis 51
+ m1 E3 v x" k. ~6 KManish Biyani, Madhu Biyani, Naoto Nemoto and Yuzuru Husimi/ }/ d& j* L X* W& k4 ?
i6 @1 [/ ` V* DSection 3 Cell-Free System and Protein Synthesis 63
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Chapter 4 Protein Synthesis in vitro:
7 g+ S# z0 N# J( w L2 _Cell-Free Systems Derived from Human Cells 65 k! {; U$ y) w3 z# M- S4 b) s' S/ r
Kodai Machida, Mamiko Masutan and Hiroaki Imataka
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. ?6 a1 [- s) R/ d0 Y9 f# G9 P. VChapter 5 Solid-Phase Cell-Free Protein Synthesis to Improve Protein Foldability 77 Manish - Y, L9 L, ]9 j0 s/ m
Biyani and Takanori Ichiki+ C! Q" S; r! b9 g: s5 R5 T
: J- n) E) K( pSection 4 Translational Control and Protein Synthesis 891 S6 C8 v8 X+ X9 E& [
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Chapter 6 Cumulative Specificity: A Universal Mechanism for the Initiation of Protein - Z' B2 E$ ?8 \7 R4 h s$ l3 n
Synthesis 91 Tokumasa Nakamoto and Ferenc J. Kezdy
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. e9 A, a! }2 {1 wChapter 7 Protein Synthesis and the Stress Response 111( S' |1 T$ k2 t# N- L5 ^
Assaf Katz and Omar Orellana
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