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Items: 1 to 20 of 73

1.

Cell cycle

Mitotic cell cycle progression is accomplished through a reproducible sequence of events, DNA replication (S phase) and mitosis (M phase) separated temporally by gaps known as G1 and G2 phases. Cyclin-dependent kinases (CDKs) are key regulatory enzymes, each consisting of a catalytic...

Type
:
pathway
Taxonomic scope
:
conserved biosystem
2.

Cell cycle

Mitotic cell cycle progression is accomplished through a reproducible sequence of events, DNA replication (S phase) and mitosis (M phase) separated temporally by gaps known as G1 and G2 phases. Cyclin-dependent kinases (CDKs) are key regulatory enzymes, each consisting of a catalytic...

Type
:
pathway
Taxonomic scope
:
organism-specific biosystem
Organism
:
Tetraodon nigroviridis
BSID:
1430071
KEGG
: tng04110
3.

Cell cycle

Mitotic cell cycle progression is accomplished through a reproducible sequence of events, DNA replication (S phase) and mitosis (M phase) separated temporally by gaps known as G1 and G2 phases. Cyclin-dependent kinases (CDKs) are key regulatory enzymes, each consisting of a catalytic...

Type
:
pathway
Taxonomic scope
:
organism-specific biosystem
Organism
:
Salmo salar
4.

Cell cycle

Mitotic cell cycle progression is accomplished through a reproducible sequence of events, DNA replication (S phase) and mitosis (M phase) separated temporally by gaps known as G1 and G2 phases. Cyclin-dependent kinases (CDKs) are key regulatory enzymes, each consisting of a catalytic...

Type
:
pathway
Taxonomic scope
:
organism-specific biosystem
Organism
:
Saimiri boliviensis boliviensis
5.

Cell cycle

Mitotic cell cycle progression is accomplished through a reproducible sequence of events, DNA replication (S phase) and mitosis (M phase) separated temporally by gaps known as G1 and G2 phases. Cyclin-dependent kinases (CDKs) are key regulatory enzymes, each consisting of a catalytic...

Type
:
pathway
Taxonomic scope
:
organism-specific biosystem
Organism
:
Loxodonta africana
6.

Cell cycle

Mitotic cell cycle progression is accomplished through a reproducible sequence of events, DNA replication (S phase) and mitosis (M phase) separated temporally by gaps known as G1 and G2 phases. Cyclin-dependent kinases (CDKs) are key regulatory enzymes, each consisting of a catalytic...

Type
:
pathway
Taxonomic scope
:
organism-specific biosystem
Organism
:
Chlorocebus sabaeus
7.

Cell cycle

Mitotic cell cycle progression is accomplished through a reproducible sequence of events, DNA replication (S phase) and mitosis (M phase) separated temporally by gaps known as G1 and G2 phases. Cyclin-dependent kinases (CDKs) are key regulatory enzymes, each consisting of a catalytic...

Type
:
pathway
Taxonomic scope
:
organism-specific biosystem
Organism
:
Gekko japonicus
8.

Cell cycle

Mitotic cell cycle progression is accomplished through a reproducible sequence of events, DNA replication (S phase) and mitosis (M phase) separated temporally by gaps known as G1 and G2 phases. Cyclin-dependent kinases (CDKs) are key regulatory enzymes, each consisting of a catalytic...

Type
:
pathway
Taxonomic scope
:
organism-specific biosystem
Organism
:
Coturnix japonica
9.

Cell cycle

Mitotic cell cycle progression is accomplished through a reproducible sequence of events, DNA replication (S phase) and mitosis (M phase) separated temporally by gaps known as G1 and G2 phases. Cyclin-dependent kinases (CDKs) are key regulatory enzymes, each consisting of a catalytic...

Type
:
pathway
Taxonomic scope
:
organism-specific biosystem
Organism
:
Apteryx australis mantelli
10.

Cell cycle

Mitotic cell cycle progression is accomplished through a reproducible sequence of events, DNA replication (S phase) and mitosis (M phase) separated temporally by gaps known as G1 and G2 phases. Cyclin-dependent kinases (CDKs) are key regulatory enzymes, each consisting of a catalytic...

Type
:
pathway
Taxonomic scope
:
organism-specific biosystem
Organism
:
Rhinopithecus roxellana
11.

Cell cycle

Mitotic cell cycle progression is accomplished through a reproducible sequence of events, DNA replication (S phase) and mitosis (M phase) separated temporally by gaps known as G1 and G2 phases. Cyclin-dependent kinases (CDKs) are key regulatory enzymes, each consisting of a catalytic...

Type
:
pathway
Taxonomic scope
:
organism-specific biosystem
Organism
:
Geospiza fortis
12.

Cell cycle

Mitotic cell cycle progression is accomplished through a reproducible sequence of events, DNA replication (S phase) and mitosis (M phase) separated temporally by gaps known as G1 and G2 phases. Cyclin-dependent kinases (CDKs) are key regulatory enzymes, each consisting of a catalytic...

Type
:
pathway
Taxonomic scope
:
organism-specific biosystem
Organism
:
Corvus cornix cornix
13.

Cell cycle

Mitotic cell cycle progression is accomplished through a reproducible sequence of events, DNA replication (S phase) and mitosis (M phase) separated temporally by gaps known as G1 and G2 phases. Cyclin-dependent kinases (CDKs) are key regulatory enzymes, each consisting of a catalytic...

Type
:
pathway
Taxonomic scope
:
organism-specific biosystem
Organism
:
Oryctolagus cuniculus
14.

Cell cycle

Mitotic cell cycle progression is accomplished through a reproducible sequence of events, DNA replication (S phase) and mitosis (M phase) separated temporally by gaps known as G1 and G2 phases. Cyclin-dependent kinases (CDKs) are key regulatory enzymes, each consisting of a catalytic...

Type
:
pathway
Taxonomic scope
:
organism-specific biosystem
Organism
:
Nannospalax galili
15.

Cell cycle

Mitotic cell cycle progression is accomplished through a reproducible sequence of events, DNA replication (S phase) and mitosis (M phase) separated temporally by gaps known as G1 and G2 phases. Cyclin-dependent kinases (CDKs) are key regulatory enzymes, each consisting of a catalytic...

Type
:
pathway
Taxonomic scope
:
organism-specific biosystem
Organism
:
Ursus maritimus
16.

Cell cycle

Mitotic cell cycle progression is accomplished through a reproducible sequence of events, DNA replication (S phase) and mitosis (M phase) separated temporally by gaps known as G1 and G2 phases. Cyclin-dependent kinases (CDKs) are key regulatory enzymes, each consisting of a catalytic...

Type
:
pathway
Taxonomic scope
:
organism-specific biosystem
Organism
:
Callithrix jacchus
17.

Cell cycle

Mitotic cell cycle progression is accomplished through a reproducible sequence of events, DNA replication (S phase) and mitosis (M phase) separated temporally by gaps known as G1 and G2 phases. Cyclin-dependent kinases (CDKs) are key regulatory enzymes, each consisting of a catalytic...

Type
:
pathway
Taxonomic scope
:
organism-specific biosystem
Organism
:
Nomascus leucogenys
18.

Cell cycle

Mitotic cell cycle progression is accomplished through a reproducible sequence of events, DNA replication (S phase) and mitosis (M phase) separated temporally by gaps known as G1 and G2 phases. Cyclin-dependent kinases (CDKs) are key regulatory enzymes, each consisting of a catalytic...

Type
:
pathway
Taxonomic scope
:
organism-specific biosystem
Organism
:
Ovis aries
19.

Cell cycle

Mitotic cell cycle progression is accomplished through a reproducible sequence of events, DNA replication (S phase) and mitosis (M phase) separated temporally by gaps known as G1 and G2 phases. Cyclin-dependent kinases (CDKs) are key regulatory enzymes, each consisting of a catalytic...

Type
:
pathway
Taxonomic scope
:
organism-specific biosystem
Organism
:
Lipotes vexillifer
20.

Cell cycle

Mitotic cell cycle progression is accomplished through a reproducible sequence of events, DNA replication (S phase) and mitosis (M phase) separated temporally by gaps known as G1 and G2 phases. Cyclin-dependent kinases (CDKs) are key regulatory enzymes, each consisting of a catalytic...

Type
:
pathway
Taxonomic scope
:
organism-specific biosystem
Organism
:
Callorhinchus milii

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