Search

Start a new search
Current filters:
Add filters:
  • Results/Page
  • Sort items by
  • In order
  • Authors/record

Results 11-20 of 63 (Search time: 0.007 seconds).

NO Title, Author(s) (Publication Title, Volume Issue, Page, Issue Date)
11
Large pKa Perturbations at an Enzyme Active Site, a Mechanistic Basis for Catalytic Power of Many Enzymes

Oh, Byung-Ha, 1st international symposium on macro- and supra-molecular architectures and materials, 2001-04-11

12
Structure of Human TRAIL and its Complex with a Receptor

Kim, MS; Oh, Byung-Ha, 19th European Crystallographic Meeting, 2000-08-25

13
Role of the Three Cysteines in the Catalysis and Stability of Ketosteroid Isomerase from Psedomonas Putida Biotype B

Kim, SW; Ju, S; Choi, G; Oh, Byung-Ha; Choi, KY, 1997 ASBMB Meeting, 1997-08-24

14
Structure of Malonamidase E2 Reveals a Novel Ser-cisSer-Lys Catalytic Triad in a New Serine Hydrolase Fold Prevalent in Nature

Oh, Byung-Ha, Bioscience in the Postgenome Era Conference, 2002-05-16

15
Identification and Characterization of Novel Catalytic Triad in a New Serine Hydrolase Family

Oh, Byung-Ha, 16th FAOBMB symposium, 2002-09-21

16
Elucidation of Enzymatic Mechanism by X-Ray Crystallographic Methods: A Themostable Phytase as an Example

Oh, Byung-Ha, 대한화학회 추계학술대회, 대한화학회, 1999-10-23

17
Crystal structure of human TRAIL in complex with death receptor 5 provides information on specificity of recognition between TNF and TNFR family

Oh, Byung-Ha, 대한면역학회/2001년 한국BRM학회 통합 추계학술대회, 대한면역학회/한국BRM학회, 2001-11-29

18
Crystal Structure of Helicobacter pylori Urease Reveals an Exquisite Molecular Design Suitable for Surviving Gastric Acid

Oh, Byung-Ha, 한국생물리학회, 한국생물리학회, 2001-06-18

19
Crystal structures of maltogenic amylase and cyclomaltodextranse

Oh, Byung-Ha, The First Symposium on ALAMY, 2001-10-01

20
A Low-Barrier Hydrogen Bond Playing an Important Role in the Enzyme Mechanism of delta-5-3-Ketosteroid Isomerase

Oh, Byung-Ha; Ha, NC; Cha, SS; Kim, JS; Cho, HS, 한국분자생물학회 추계학술대회, 한국분자생물학회, 1997-10-16

rss_1.0 rss_2.0 atom_1.0