APA
Deery E., Schroeder S., Lawrence A. D., Taylor S. L., Seyedarabi A., Waterman J., Wilson K. S., Brown D., Geeves M. A., Howard M. J., Pickersgill R. W. & Warren M. J. (20130212). An enzyme-trap approach allows isolation of intermediates in cobalamin biosynthesis. : Nature chemical biology.
Chicago
Deery Evelyne, Schroeder Susanne, Lawrence Andrew D, Taylor Samantha L, Seyedarabi Arefeh, Waterman Jitka, Wilson Keith S, Brown David, Geeves Michael A, Howard Mark J, Pickersgill Richard W and Warren Martin J. 20130212. An enzyme-trap approach allows isolation of intermediates in cobalamin biosynthesis. : Nature chemical biology.
Harvard
Deery E., Schroeder S., Lawrence A. D., Taylor S. L., Seyedarabi A., Waterman J., Wilson K. S., Brown D., Geeves M. A., Howard M. J., Pickersgill R. W. and Warren M. J. (20130212). An enzyme-trap approach allows isolation of intermediates in cobalamin biosynthesis. : Nature chemical biology.
MLA
Deery Evelyne, Schroeder Susanne, Lawrence Andrew D, Taylor Samantha L, Seyedarabi Arefeh, Waterman Jitka, Wilson Keith S, Brown David, Geeves Michael A, Howard Mark J, Pickersgill Richard W and Warren Martin J. An enzyme-trap approach allows isolation of intermediates in cobalamin biosynthesis. : Nature chemical biology. 20130212.