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& G, }1 j1 V# n( q0 B% HCELL-FREE
+ G2 @6 q; |# e. QPROTEIN SYNTHESIS/ g$ p; {- ^1 _- a* i. O
Edited by Manish Biyani( ?7 q0 f3 }, R3 h$ j) h z E
Copyright © 2012 InTech
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@& s4 U7 }7 ?7 z/ UContents1 ?, x5 Y! [1 C4 ], a; Z
Preface VII
" i4 R! b9 }' N3 z6 z, l$ \/ }Section 1 Fundamental Understanding and Protein Synthesis 12 v- j+ B: C' j$ b' E- R
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Chapter 1 Ribosomes from Trypanosomatids:+ m4 _, ~8 E. y6 l* I7 i
Unique Structural and Functional Properties 37 e; T$ [, |+ J& d& E! m. v7 p" V, p
Maximiliano Juri Ayub, Walter J. Lapadula, Johan Hoebeke and Cristian R. Smulski
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& ~8 j+ F9 ~+ Q2 f2 O6 YSection 2 Evolution and Protein Synthesis 29
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Chapter 2 On the Emergence and Evolution6 S7 g1 [( _0 i6 o7 t1 p
of the Eukaryotic Translation Apparatus 31
) }- F- X! ?' `+ ^9 ^& a3 t1 k6 wGreco Hernández
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) ~8 V' U) s% q1 EChapter 3 Evolutionary Molecular Engineering" ?( C; T8 _1 `9 m7 c5 M, ~" J: t
to Efficiently Direct in vitro Protein Synthesis 51" n; S5 q0 K1 G9 {9 h4 G- u n# q+ e
Manish Biyani, Madhu Biyani, Naoto Nemoto and Yuzuru Husimi
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Section 3 Cell-Free System and Protein Synthesis 63
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" p! K/ T/ \6 T& V1 n0 \$ F/ aChapter 4 Protein Synthesis in vitro:/ w# O3 E1 ^7 T
Cell-Free Systems Derived from Human Cells 65! w: G, i# K5 m( y
Kodai Machida, Mamiko Masutan and Hiroaki Imataka
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Chapter 5 Solid-Phase Cell-Free Protein Synthesis to Improve Protein Foldability 77 Manish
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% \& V8 ]% E% A0 ]* sSection 4 Translational Control and Protein Synthesis 89$ w' H2 `% _2 x+ L
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Chapter 6 Cumulative Specificity: A Universal Mechanism for the Initiation of Protein
& B' F- [: q! @5 c) MSynthesis 91 Tokumasa Nakamoto and Ferenc J. Kezdy3 @$ N4 s, T; I2 j$ J; Z
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Chapter 7 Protein Synthesis and the Stress Response 1116 z% P9 j- {/ F
Assaf Katz and Omar Orellana; A* c' i6 Q( d/ s4 {0 D2 C E
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