Forschung
Lehre
Lösungen
Anmelden
DE
EN - English
CN - 中文
DE - Deutsch
ES - Español
KR - 한국어
IT - Italiano
FR - Français
PT - Português
TR - Turkish
JA - Japanese
Synthetic Biology Platform,
Wyss Institute for Biologically Inspired Engineering,
Synthetic Biology Platform, Wyss Institute for Biologically Inspired Engineering
Matthew D. Mattozzi has not added Biography.
If you are Matthew D. Mattozzi and would like to personalize this page please email our Author Liaison for assistance.
Expression of the sub-pathways of the Chloroflexus aurantiacus 3-hydroxypropionate carbon fixation bicycle in E. coli: Toward horizontal transfer of autotrophic growth.
Metabolic engineering Mar, 2013 | Pubmed ID: 23376595
Targeting a heterologous protein to multiple plant organelles via rationally designed 5' mRNA tags.
Journal of biological engineering , 2013 | Pubmed ID: 24011257
Harvard University
Harvard Medical School
Matthew D. Mattozzi1,2,
Mathias J. Voges1,2,3,
Pamela A. Silver1,2,
Jeffrey C. Way1,2
1Synthetic Biology Platform, Wyss Institute for Biologically Inspired Engineering, Harvard University,
2Department of Systems Biology, Harvard Medical School,
3Department of Biotechnology, Delft University of Technology
Datenschutz
Nutzungsbedingungen
Richtlinien
Kontakt
BIBLIOTHEKS-EMPFEHLUNG
JoVE-Newsletter
JoVE Journal
Methodensammlungen
JoVE Encyclopedia of Experiments
Archiv
JoVE Core
JoVE Business
JoVE Science Education
JoVE Lab Manual
Ressourcen für Lehrende
Autoren
Bibliothekare
Zugang
ÜBER JoVE
Copyright © 2024 MyJoVE Corporation. Alle Rechte vorbehalten