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1

Heterocycles(1993)
2

Heterocycles (1997)
Fukumoto K. (Editor)
3

Heterocycles (1996)
4

Heterocycles (1995)
5

Heterocycles (1992)
Fukumoto K. (Editor)
6

Heterocycles (1987)
7

Heterocycles (1991)
8

Molecular Electronics: Commercial Insights, Chemistry, Devices, Architecture and Programming
James M. Tour
9

Molecular Electronics: Commercial Insights, Chemistry, Devices, Architecture and Programming
James M. Tour
10

Molecular Electronics: Commercial Insights, Chemistry, Devices, Architecture and Programming
James M. Tour
11

Molecular electronics: commercial insights, chemistry, devices, architecture, and programming
James M. Tour
12

Heterocycles (1981)
13

Heterocycles (1982)
14

Heterocycles (1984)
Fukumoto K.
15

Handbook of terpenoids Volume II: Pentacyclic and Hexacyclic Triterpenoids
Dev; Sukh; Gupta; Amrit Sagar; Nagasampagi; Bhimsen A.; Patwardhan; Sarita A
16

CRC handbook of terpenoids / Triterpenoids. Volume II: Pentacyclic and Hexacyclic Triterpenoids
Sukh Dev
17

Heterocycles (1985)
18

Handbook of Secondary Fungal Metabolites, 3-Volume Set
Richard J. Cole; Milbra A. Schweikert; Bruce B. Jarvis
19

Cdc13 both positively and negatively regulates telomere replication
Chandra; A
20

Heterocycles (1983)
Fukumoto K. (ed.)
21

Heterocycles (1988)
22

R.B. Woodward Remembered. A Collection of Papers in Honour of Robert Burns Woodward 1917–1979
D.H.R. Barton (Eds.)
23

Heterocycles (1986)
Fukumoto K. (ed.)
24

Linear chromosome maintenance in the absence of essential telomere-capping proteins
Zubko; Mikhajlo K.; Lydall; David
25

Photochemical Key Steps in Organic Synthesis: An Experimental Course Book
Jochen Mattay; Axel Griesbeck
26

Photochemical key steps in organic synthesis: an experimental course book
Jochen Mattay; Axel Griesbeck
27

Heterocycles (1977)
28

A Naturally Thermolabile Activity Compromises Genetic Analysis of Telomere Function in Saccharomyces cerevisiae
Paschini; M.; Toro; T. B.; Lubin; J. W.; Braunstein-Ballew; B.; Morris; D. K.; Lundblad; V
29

Cdc13 Delivers Separate Complexes to the Telomere for End Protection and Replication
Erin Pennock; Kathleen Buckley; Victoria Lundblad
30

Thermodynamic and kinetic data for macrocycle interactions with cations and anions
Izatt; Reed M.; Pawlak; Krystyna.; Bradshaw; Jerald S.; Bruening; Ronald L
31

SUMOylation regulates telomere length homeostasis by targeting Cdc13
Hang; Lisa E; Liu; Xianpeng; Cheung; Iris; Yang; Yan; Zhao; Xiaolan
32

Heterocycles (1980)
33

Heterocycles (1979)
34

Heterocycles (1978)
35

Rap1 Binds Single-stranded DNA at Telomeric Double- and Single-stranded Junctions and Competes with Cdc13 Protein
Gustafsson; C.; Rhodin Edso; J.; Cohn; M
36

Cdk1-Dependent Phosphorylation of Cdc13 Coordinates Telomere Elongation during Cell-Cycle Progression
Shang Li; Svetlana Makovets; Tetsuya Matsuguchi; Justin D. Blethrow; Kevan M. Shokat; Elizabeth H. Blackburn
37

Cdc13 prevents telomere uncapping and Rad50-dependent homologous recombination
Grandin; N
38

Nitrogen NMR Spectroscopy
G.A. Webb (Eds.)
39

Structural bases of dimerization of yeast telomere protein Cdc13 and its interaction with the catalytic subunit of DNA polymerase α
Sun; Jia; Yang; Yuting; Wan; Ke; Mao; Ninghui; Yu; Tai-Yuan; Lin; Yi-Chien; DeZwaan; Diane C; Freeman; Brian C; Lin; Jing-Jer; Lue; Neal F; Lei; Ming
40

The Hsp82 molecular chaperone promotes a switch between unextendable and extendable telomere states
DeZwaan; Diane C; Toogun; Oyetunji A; Echtenkamp; Frank J; Freeman; Brian C
41

Heterocycles (1976)
42

The chemistry of enamines. in 2 part
Rappoport Z. (eds.)
43

The Chemistry of Enamines in 2 part
Zvi Rappoport (Editor)
44

The Chemistry of Enamines in 2 part
Rappoport Zvi. (ed.)
45

MRX protects telomeric DNA at uncapped telomeres of budding yeast cdc13-1 mutants
Steven S. Foster; Mikhajlo K. Zubko; Sandrine Guillard; David Lydall
46

Modelling the checkpoint response to telomere uncapping in budding yeast
Proctor; C.J.; Lydall; D.A.; Boys; R.J.; Gillespie; C.S.; Shanley; D.P.; Wilkinson; D.J.; Kirkwood; T.B.L
47

Heterocycles (1989)
Fukumoto K. (ed.)
48

The DNA damage checkpoint and PKA pathways converge on APC substrates and Cdc20 to regulate mitotic progression
Searle; Jennifer S.; Schollaert; Kaila L.; Wilkins; Benjamin J.; Sanchez; Yolanda
49

Novel alleles ofcdc13andcdc2isolated as suppressors of mitotic catastrophe inSchizosaccharomyces pombe
L. D. Berry; K. L. Gould