Reference for effective siRNAs |
ID |
reference |
1 |
Harborth
J, Elbashir SM, Bechert K, Tuschl T, and Weber K. (2001) Identification of
essential genes in cultured mammalian cells using small interfering RNAs. J
Cell Science 114: 4557-4565. |
2 |
Harborth
J, Elbashir SM, Bechert K, Tuschl T, and Weber K. (2001) Identification of
essential genes in cultured mammalian cells using small interfering RNAs. J
Cell Science 114: 4557-4565. |
3 |
Shang
Y and Brown M. (2002). Molecular determinants for the tissue specificity of
SERMs. Science 295:2465-2468. |
4 |
Harborth
J, Elbashir SM, Bechert K, Tuschl T, and Weber K. (2001) Identification of
essential genes in cultured mammalian cells using small interfering RNAs. J
Cell Science 114: 4557-4565. |
5 |
Cortez
D, Guntuku S, Qin J, and Elledge SJ. (2001) ATR and ATRIP: partners in
checkpoint signaling. Science 294:1713-1716. |
6 |
Cortez
D, Guntuku S, Qin J, and Elledge SJ. (2001) ATR and ATRIP: partners in
checkpoint signaling. Science 294:1713-1716. |
7 |
Cortez
D, Guntuku S, Qin J, and Elledge SJ. (2001) ATR and ATRIP: partners in
checkpoint signaling. Science 294:1713-1716. |
8 |
Mailand
N, Lukas C, Kaiser BK, Jackson PK, Bartek J, and Lukas J. (2002). Deregulated
human Cdc14A phosphatase disrupts centrosome separation and chromosome
segregation. Nature Cell Biol. 4:318-322. |
9 |
Harborth
J, Elbashir SM, Bechert K, Tuschl T, and Weber K. (2001) Identification of
essential genes in cultured mammalian cells using small interfering RNAs. J
Cell Science 114: 4557-4565. |
10 |
Harborth
J, Elbashir SM, Bechert K, Tuschl T, and Weber K. (2001) Identification of
essential genes in cultured mammalian cells using small interfering RNAs. J
Cell Science 114: 4557-4565. |
11 |
Harborth
J, Elbashir SM, Bechert K, Tuschl T, and Weber K. (2001) Identification of
essential genes in cultured mammalian cells using small interfering RNAs. J
Cell Science 114: 4557-4565. |
12 |
Liu
J, Yao F, Wu R, Morgan M, Thorburn A, Finely RL, Chen YQ. (2002). Mediation
of the DCC apoptotic signal by DIP13 alpha. J. Biol. Chem.
277(29):26281-26285. |
13 |
Liu
J, Yao F, Wu R, Morgan M, Thorburn A, Finely RL, Chen YQ. (2002). Mediation
of the DCC apoptotic signal by DIP13 alpha. J. Biol. Chem.
277(29):26281-26285. |
14 |
Harborth
J, Elbashir SM, Bechert K, Tuschl T, and Weber K. (2001) Identification of
essential genes in cultured mammalian cells using small interfering RNAs. J
Cell Science 114: 4557-4565. |
15 |
Harborth
J, Elbashir SM, Bechert K, Tuschl T, and Weber K. (2001) Identification of
essential genes in cultured mammalian cells using small interfering RNAs. J
Cell Science 114: 4557-4565. |
16 |
Bai
X, Zhou D, Brown JR, Crawford BE, Hennet T, and Esko JD. (2001). Biosynthesis
of the linkage region of glycosaminoglycans. J. Biol. Chem.
276(51):48189-48195. |
17 |
Bai
X, Zhou D, Brown JR, Crawford BE, Hennet T, and Esko JD. (2001). Biosynthesis
of the linkage region of glycosaminoglycans. J. Biol. Chem.
276(51):48189-48195. |
18 |
Harborth
J, Elbashir SM, Bechert K, Tuschl T, and Weber K. (2001) Identification of
essential genes in cultured mammalian cells using small interfering RNAs. J
Cell Science 114: 4557-4565. |
19 |
Martin-Lluesma
S, Stucke VM, and Nigg EA. (2002). Role of Hec1 in spindle checkpoint
signaling and kinetochore recruitment of Mad1/Mad2. Science 297:2267-2270. |
20 |
Harborth
J, Elbashir SM, Bechert K, Tuschl T, and Weber K. (2001) Identification of
essential genes in cultured mammalian cells using small interfering RNAs. J
Cell Science 114: 4557-4565. |
21 |
Harborth
J, Elbashir SM, Bechert K, Tuschl T, and Weber K. (2001) Identification of
essential genes in cultured mammalian cells using small interfering RNAs. J
Cell Science 114: 4557-4565. |
22 |
Bakker
J, Lin X, and Nelson WG. (2002). Methyl-CpG binding domain protein 2
represses transcription from hypermethylated p-class
glutathione-S-transferase gene promoters in hepatocellular carcinoma cells.
J. Biol. Chem.277:22573--22580 |
23 |
Harborth
J, Elbashir SM, Bechert K, Tuschl T, and Weber K. (2001) Identification of
essential genes in cultured mammalian cells using small interfering RNAs. J
Cell Science 114: 4557-4565. |
24 |
Harborth
J, Elbashir SM, Bechert K, Tuschl T, and Weber K. (2001) Identification of
essential genes in cultured mammalian cells using small interfering RNAs. J
Cell Science 114: 4557-4565. |
25 |
Harborth
J, Elbashir SM, Bechert K, Tuschl T, and Weber K. (2001) Identification of
essential genes in cultured mammalian cells using small interfering RNAs. J
Cell Science 114: 4557-4565. |
26 |
Martin-Lluesma
S, Stucke VM, and Nigg EA. (2002). Role of Hec1 in spindle checkpoint
signaling and kinetochore recruitment of Mad1/Mad2. Science 297:2267-2270. |
27 |
Surka
MC, Tsang CW, and Trimble WS. (2002). The mammalian septin MSF localizes with
microtubules and is required for completion of cytokinesis. Mol Biol. Cell
13:3532-3545. |
28 |
Bakker
J, Lin X, and Nelson WG. (2002). Methyl-CpG binding domain protein 2
represses transcription from hypermethylated p-class
glutathione-S-transferase gene promoters in hepatocellular carcinoma cells.
J. Biol. Chem.277:22573--22580 |
29 |
Tsuneoka
M, Koda Y, Soejima M, Teye K, and Kimura H. (2002). A novel Myc target gene,
mina53, that is involved in cell proliferation. J. Biol. Chem.
277(38):35450-35459. |
30 |
Harborth
J, Elbashir SM, Bechert K, Tuschl T, and Weber K. (2001) Identification of
essential genes in cultured mammalian cells using small interfering RNAs. J
Cell Science 114: 4557-4565. |
31 |
Harborth
J, Elbashir SM, Bechert K, Tuschl T, and Weber K. (2001) Identification of
essential genes in cultured mammalian cells using small interfering RNAs. J
Cell Science 114: 4557-4565. |
32 |
Prasanth
SG, Prasanth KV, and Stillman B. (2002). Orc6 involved in DNA replication,
chromosome segregation, and cytokinesis. Science 297:1026-1031. |
33 |
Prasanth
SG, Prasanth KV, and Stillman B. (2002). Orc6 involved in DNA replication,
chromosome segregation, and cytokinesis. Science 297:1026-1031. |
34 |
Chevrier
V, Piel M, Collomb N, Saoudi Y, Frank R, Paintrand M, Narumiya S, Bornens M,
and Job D. (2002). The Rho-associated protein kinase p160ROCK is required for
centrosome positioning. J. Cell Biol. 157:807-817. |
35 |
Chevrier
V, Piel M, Collomb N, Saoudi Y, Frank R, Paintrand M, Narumiya S, Bornens M,
and Job D. (2002). The Rho-associated protein kinase p160ROCK is required for
centrosome positioning. J. Cell Biol. 157:807-817. |
36 |
Chevrier
V, Piel M, Collomb N, Saoudi Y, Frank R, Paintrand M, Narumiya S, Bornens M,
and Job D. (2002). The Rho-associated protein kinase p160ROCK is required for
centrosome positioning. J. Cell Biol. 157:807-817. |
37 |
Chevrier
V, Piel M, Collomb N, Saoudi Y, Frank R, Paintrand M, Narumiya S, Bornens M,
and Job D. (2002). The Rho-associated protein kinase p160ROCK is required for
centrosome positioning. J. Cell Biol. 157:807-817. |
38 |
Hirai
H and Wang H-G. (2002). A role of the C-terminal region of human Rad9 (hRad9)
in nuclear transport of the hRad9 checkpoint complex. J. Biol. Chem.
277(28):25722-25727 |
39 |
Kisielow
M, Kleiner S, Nagasawa M, Faisal A, and Nagamine Y. (2002) Isoform-specific
knockdown and expression of adapter protein ShcA using small interfering RNA.
Biochem. J. 363:1-5. |
40 |
Kisielow
M, Kleiner S, Nagasawa M, Faisal A, and Nagamine Y. (2002) Isoform-specific
knockdown and expression of adapter protein ShcA using small interfering RNA.
Biochem. J. 363:1-5. |
41 |
Holen
T, Amarzguioui M, Wiige, MT, Babaie E, and Prydz H. (2002). Positional
effects of short interfering RNAs targeting the human coagulation trigger
tissue factor. Nucl. Acids Res. 30(8):1757-1766 |
42 |
Holen
T, Amarzguioui M, Wiige, MT, Babaie E, and Prydz H. (2002). Positional
effects of short interfering RNAs targeting the human coagulation trigger
tissue factor. Nucl. Acids Res. 30(8):1757-1766 |
43 |
Hewitt
EW, Duncan L, Mufti D, Baker J, Stevenson PG, and Lehner PJ. (2002).
Ubiquitylation of MHC class I by the K3 viral protein signals internalization
and TSG101-dependent degradation. EMBO 21(10): 2418-2429. |
44 |
Harborth
J, Elbashir SM, Bechert K, Tuschl T, and Weber K. (2001) Identification of
essential genes in cultured mammalian cells using small interfering RNAs. J
Cell Science 114: 4557-4565. |
45 |
Harborth
J, Elbashir SM, Bechert K, Tuschl T, and Weber K. (2001) Identification of
essential genes in cultured mammalian cells using small interfering RNAs. J
Cell Science 114: 4557-4565. |
46 |
Harborth
J, Elbashir SM, Bechert K, Tuschl T, and Weber K. (2001) Identification of
essential genes in cultured mammalian cells using small interfering RNAs. J
Cell Science 114: 4557-4565. |
47 |
Harborth
J, Elbashir SM, Bechert K, Tuschl T, and Weber K. (2001) Identification of
essential genes in cultured mammalian cells using small interfering RNAs. J
Cell Science 114: 4557-4565. |
48 |
Harborth
J, Elbashir SM, Bechert K, Tuschl T, and Weber K. (2001) Identification of
essential genes in cultured mammalian cells using small interfering RNAs. J
Cell Science 114: 4557-4565. |
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