k Nuclear pore complexes, AFM Nuclear pore complexes. Diagram of a nucleus showing the area represented by a coloured atomic force micrograph AFM, right of the nuclear surface. The surface is covered in nuclear pore complexes NPCs, which are complexes of proteins that are embedded in the nuclear envelope. All material moving between the nucleus and the cell cytoplasm passes through these channels. They allow passive transport diffusion of ions and small molecules and active transport energy dependent of proteins and RNAs ribonucleic acids. Magnification of AFM x14,500 when whole image printed at 10 centimetres wide. Stock Photo - Afloimages
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Nuclear pore complexes, AFM Nuclear pore complexes. Diagram of a nucleus showing the area represented by a coloured atomic force micrograph  AFM, right  of the nuclear surface. The surface is covered in nuclear pore complexes  NPCs , which are complexes of proteins that are embedded in the nuclear envelope. All material moving between the nucleus and the cell cytoplasm passes through these channels. They allow passive transport  diffusion  of ions and small molecules and active transport  energy dependent  of proteins and RNAs  ribonucleic acids . Magnification of AFM: x14,500 when whole image printed at 10 centimetres wide.
RM

Nuclear pore complexes, AFM

Nuclear pore complexes. Diagram of a nucleus showing the area represented by a coloured atomic force micrograph (AFM, right) of the nuclear surface. The surface is covered in nuclear pore complexes (NPCs), which are complexes of proteins that are embedded in the nuclear envelope. All material moving between the nucleus and the cell cytoplasm passes through these channels. They allow passive transport (diffusion) of ions and small molecules and active transport (energy dependent) of proteins and RNAs (ribonucleic acids). Magnification of AFM: x14,500 when whole image printed at 10 centimetres wide.

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