References
1. Contreras-Gomez A, Sanchez-Miron A,
Garcia-Camacho F, Molina-Grima E, Chisti Y
(2014) Protein production using the
baculovirus-insect cell expression system. Biotechnol Prog 30(1):1–18
2. Martinez-Solis M, Herrero S, Targovnik AM
(2019) Engineering of the baculovirus expression system for optimized protein production.
Appl Microbiol Biotechnol 103(1):113–123
3. Berger I, Poterszman A (2015) Baculovirus
expression: old dog, new tricks. Bioengineered
6(6):316–322
4. Gupta K, Tolzer C, Sari-Ak D, Fitzgerald DJ,
Schaffitzel C, Berger I (2019) MultiBac:
baculovirus-mediated multigene DNA cargo
delivery in insect and mammalian cells. Viruses
11(3):198
5. Berger I, Fitzgerald DJ, Richmond TJ (2004)
Baculovirus expression system for heterologous multiprotein complexes. Nat Biotechnol
22(12):1583–1587
6. Fitzgerald DJ, Berger P, Schaffitzel C,
Yamada K, Richmond TJ, Berger I (2006) Protein complex expression by using multigene
baculoviral vectors. Nat Methods 3
(12):1021–1032
7. Trowitzsch S, Bieniossek C, Nie Y, Garzoni F,
Berger I (2010) New baculovirus expression
tools for recombinant protein complex production. J Struct Biol 172(1):45–54
8. Weissmann F, Petzold G, VanderLinden R,
Huis In’t Veld PJ, Brown NG, Lampert F,
Westermann S, Stark H, Schulman BA, Peters
JM (2016) biGBac enables rapid gene assembly
for the expression of large multisubunit protein
complexes. Proc Natl Acad Sci U S A 113(19):
E2564–E2569
9. Zhang Z, Yang J, Barford D (2016) Recombinant expression and reconstitution of multiprotein complexes by the USER cloning
method in the insect cell-baculovirus expression system. Methods 95:13–25
10. Osz-Papai J, Radu L, Abdulrahman W, KolbCheynel I, Troffer-Charlier N, Birck C,
Poterszman A (2015) Insect cells-baculovirus
system for the production of difficult to express
proteins. Methods Mol Biol 1258:181–205
11. Abdulrahman W, Radu L, Garzoni F,
Kolesnikova O, Gupta K, Osz-Papai J,
Berger I, Poterszman A (2015) The production of multiprotein complexes in insect cells
using the baculovirus expression system. Methods Mol Biol 1261:91–114
12. Abdulrahman W, Iltis I, Radu L, Braun C,
Maglott-Roth A, Giraudon C, Egly JM,
Poterszman A (2013) ARCH domain of
XPD, an anchoring platform for CAK that conditions TFIIH DNA repair and transcription
activities. Proc Natl Acad Sci U S A 110(8):
E633–E642
13. Kobbi L, Demey-Thomas E, Braye F, Proux F,
Kolesnikova O, Vinh J, Poterszman A, Bensaude O (2016) An evolutionary conserved
Hexim1 peptide binds to the Cdk9 catalytic
site to inhibit P-TEFb. Proc Natl Acad Sci U
S A 113(45):12721–12726
14. Radu L, Schoenwetter E, Braun C, Marcoux J,
Koelmel W, Schmitt DR, Kuper J, Cianferani S,
Egly JM, Poterszman A, Kisker C (2017) The
intricate network between the p34 and p44
subunits is central to the activity of the transcription/DNA repair factor TFIIH. Nucleic
Acids Res 45(18):10872–10883
15. Gibson DG, Young L, Chuang RY, Venter JC,
Hutchison CA 3rd, Smith HO (2009) Enzymatic assembly of DNA molecules up to several
hundred
kilobases.
Nat
Methods
6
(5):343–345
16. Irwin CR, Farmer A, Willer DO, Evans DH
(2012) In-fusion(R) cloning with vaccinia
virus DNA polymerase. Methods Mol Biol
890:23–35
17. Li MZ, Elledge SJ (2007) Harnessing homologous recombination in vitro to generate
recombinant DNA via SLIC. Nat Methods 4
(3):251–256
18. Bryksin AV, Matsumura I (2010) Overlap
extension PCR cloning: a simple and reliable
way to create recombinant plasmids. Biotechniques 48(6):463–465
19. Unger T, Jacobovitch Y, Dantes A,
Bernheim R, Peleg Y (2010) Applications of
the Restriction Free (RF) cloning procedure
for molecular manipulations and protein
expression. J Struct Biol 172(1):34–44
20. van den Ent F, Lowe J (2006) RF cloning: a
restriction-free method for inserting target
genes into plasmids. J Biochem Biophys Methods 67(1):67–74
21. Bustin SA, Mueller R, Nolan T (2020) Parameters for successful PCR primer design.
Methods Mol Biol 2065:5–22
38
Paola Rossolillo et al.
1. Contreras-Gomez A, Sanchez-Miron A,
Garcia-Camacho F, Molina-Grima E, Chisti Y
(2014) Protein production using the
baculovirus-insect cell expression system. Biotechnol Prog 30(1):1–18
2. Martinez-Solis M, Herrero S, Targovnik AM
(2019) Engineering of the baculovirus expression system for optimized protein production.
Appl Microbiol Biotechnol 103(1):113–123
3. Berger I, Poterszman A (2015) Baculovirus
expression: old dog, new tricks. Bioengineered
6(6):316–322
4. Gupta K, Tolzer C, Sari-Ak D, Fitzgerald DJ,
Schaffitzel C, Berger I (2019) MultiBac:
baculovirus-mediated multigene DNA cargo
delivery in insect and mammalian cells. Viruses
11(3):198
5. Berger I, Fitzgerald DJ, Richmond TJ (2004)
Baculovirus expression system for heterologous multiprotein complexes. Nat Biotechnol
22(12):1583–1587
6. Fitzgerald DJ, Berger P, Schaffitzel C,
Yamada K, Richmond TJ, Berger I (2006) Protein complex expression by using multigene
baculoviral vectors. Nat Methods 3
(12):1021–1032
7. Trowitzsch S, Bieniossek C, Nie Y, Garzoni F,
Berger I (2010) New baculovirus expression
tools for recombinant protein complex production. J Struct Biol 172(1):45–54
8. Weissmann F, Petzold G, VanderLinden R,
Huis In’t Veld PJ, Brown NG, Lampert F,
Westermann S, Stark H, Schulman BA, Peters
JM (2016) biGBac enables rapid gene assembly
for the expression of large multisubunit protein
complexes. Proc Natl Acad Sci U S A 113(19):
E2564–E2569
9. Zhang Z, Yang J, Barford D (2016) Recombinant expression and reconstitution of multiprotein complexes by the USER cloning
method in the insect cell-baculovirus expression system. Methods 95:13–25
10. Osz-Papai J, Radu L, Abdulrahman W, KolbCheynel I, Troffer-Charlier N, Birck C,
Poterszman A (2015) Insect cells-baculovirus
system for the production of difficult to express
proteins. Methods Mol Biol 1258:181–205
11. Abdulrahman W, Radu L, Garzoni F,
Kolesnikova O, Gupta K, Osz-Papai J,
Berger I, Poterszman A (2015) The production of multiprotein complexes in insect cells
using the baculovirus expression system. Methods Mol Biol 1261:91–114
12. Abdulrahman W, Iltis I, Radu L, Braun C,
Maglott-Roth A, Giraudon C, Egly JM,
Poterszman A (2013) ARCH domain of
XPD, an anchoring platform for CAK that conditions TFIIH DNA repair and transcription
activities. Proc Natl Acad Sci U S A 110(8):
E633–E642
13. Kobbi L, Demey-Thomas E, Braye F, Proux F,
Kolesnikova O, Vinh J, Poterszman A, Bensaude O (2016) An evolutionary conserved
Hexim1 peptide binds to the Cdk9 catalytic
site to inhibit P-TEFb. Proc Natl Acad Sci U
S A 113(45):12721–12726
14. Radu L, Schoenwetter E, Braun C, Marcoux J,
Koelmel W, Schmitt DR, Kuper J, Cianferani S,
Egly JM, Poterszman A, Kisker C (2017) The
intricate network between the p34 and p44
subunits is central to the activity of the transcription/DNA repair factor TFIIH. Nucleic
Acids Res 45(18):10872–10883
15. Gibson DG, Young L, Chuang RY, Venter JC,
Hutchison CA 3rd, Smith HO (2009) Enzymatic assembly of DNA molecules up to several
hundred
kilobases.
Nat
Methods
6
(5):343–345
16. Irwin CR, Farmer A, Willer DO, Evans DH
(2012) In-fusion(R) cloning with vaccinia
virus DNA polymerase. Methods Mol Biol
890:23–35
17. Li MZ, Elledge SJ (2007) Harnessing homologous recombination in vitro to generate
recombinant DNA via SLIC. Nat Methods 4
(3):251–256
18. Bryksin AV, Matsumura I (2010) Overlap
extension PCR cloning: a simple and reliable
way to create recombinant plasmids. Biotechniques 48(6):463–465
19. Unger T, Jacobovitch Y, Dantes A,
Bernheim R, Peleg Y (2010) Applications of
the Restriction Free (RF) cloning procedure
for molecular manipulations and protein
expression. J Struct Biol 172(1):34–44
20. van den Ent F, Lowe J (2006) RF cloning: a
restriction-free method for inserting target
genes into plasmids. J Biochem Biophys Methods 67(1):67–74
21. Bustin SA, Mueller R, Nolan T (2020) Parameters for successful PCR primer design.
Methods Mol Biol 2065:5–22
38
Paola Rossolillo et al.
