Fraud Blocker Skip to main content

Polypeptide Chain Collection

The polypeptide chain is a vital component of the cell membrane, as depicted in various artworks such as C013/7467, F007/1477, F007/1479, F007/1480, F007/1478, F007/1475

Background imagePolypeptide Chain Collection: Cell membrane, artwork C013 / 7467

Cell membrane, artwork C013 / 7467
Computer artwork of a cutaway view of the human cell membrane. The cell Membrane is a complex part of the cell that controls what can get in and out of the cell

Background imagePolypeptide Chain Collection: Cell membrane lipid bilayer, artwork F007 / 1477

Cell membrane lipid bilayer, artwork F007 / 1477
Phospholipid bilayer. Computer artwork of the phospholipid bilayer that forms the membrane around all living cells. The cell membrane is made of phospholipid molecules

Background imagePolypeptide Chain Collection: Cell membrane lipid bilayer, artwork F007 / 1479

Cell membrane lipid bilayer, artwork F007 / 1479
Phospholipid bilayer. Computer artwork of the phospholipid bilayer that forms the membrane around all living cells. The cell membrane is made of phospholipid molecules

Background imagePolypeptide Chain Collection: Cell membrane lipid bilayer, artwork F007 / 1480

Cell membrane lipid bilayer, artwork F007 / 1480
Phospholipid bilayer. Computer artwork of the phospholipid bilayer that forms the membrane around all living cells. The cell membrane is made of phospholipid molecules

Background imagePolypeptide Chain Collection: Cell membrane lipid bilayer, artwork F007 / 1478

Cell membrane lipid bilayer, artwork F007 / 1478
Phospholipid bilayer. Computer artwork of the phospholipid bilayer that forms the membrane around all living cells. The cell membrane is made of phospholipid molecules

Background imagePolypeptide Chain Collection: Cell membrane lipid bilayer, artwork F007 / 1475

Cell membrane lipid bilayer, artwork F007 / 1475
Phospholipid bilayer. Computer artwork of the phospholipid bilayer that forms the membrane around all living cells. The cell membrane is made of phospholipid molecules

Background imagePolypeptide Chain Collection: Cell membrane lipid bilayer, artwork F007 / 1474

Cell membrane lipid bilayer, artwork F007 / 1474
Phospholipid bilayer. Computer artwork of the phospholipid bilayer that forms the membrane around all living cells. The cell membrane is made of phospholipid molecules

Background imagePolypeptide Chain Collection: Cell membrane lipid bilayer, artwork F007 / 1473

Cell membrane lipid bilayer, artwork F007 / 1473
Phospholipid bilayer. Computer artwork of the phospholipid bilayer that forms the membrane around all living cells. The cell membrane is made of phospholipid molecules

Background imagePolypeptide Chain Collection: Cell membrane, artwork C016 / 0614

Cell membrane, artwork C016 / 0614
Computer artwork of a cutaway side view of the human cell membrane. The cell Membrane is a complex part of the cell that controls what can get in and out of the cell

Background imagePolypeptide Chain Collection: Cell membrane, artwork C016 / 0613

Cell membrane, artwork C016 / 0613
Computer artwork of a cutaway side view of the human cell membrane. The cell Membrane is a complex part of the cell that controls what can get in and out of the cell

Background imagePolypeptide Chain Collection: Cell membrane, artwork C016 / 0609

Cell membrane, artwork C016 / 0609
Computer artwork of a cutaway side view of the human cell membrane. The cell Membrane is a complex part of the cell that controls what can get in and out of the cell

Background imagePolypeptide Chain Collection: Cell membrane, artwork C016 / 0607

Cell membrane, artwork C016 / 0607
Computer artwork of a cutaway side view of the human cell membrane. The cell Membrane is a complex part of the cell that controls what can get in and out of the cell

Background imagePolypeptide Chain Collection: Cell membrane, artwork C016 / 0603

Cell membrane, artwork C016 / 0603
Computer artwork of a cutaway side view of the human cell membrane. The cell Membrane is a complex part of the cell that controls what can get in and out of the cell

Background imagePolypeptide Chain Collection: Cell membrane, artwork C013 / 7469

Cell membrane, artwork C013 / 7469
Computer artwork of a cutaway view of the human cell membrane. The cell Membrane is a complex part of the cell that controls what can get in and out of the cell

Background imagePolypeptide Chain Collection: Cell membrane, artwork C013 / 7468

Cell membrane, artwork C013 / 7468
Computer artwork of a cutaway view of the human cell membrane. The cell Membrane is a complex part of the cell that controls what can get in and out of the cell

Background imagePolypeptide Chain Collection: Immunoglobulin G antibody

Immunoglobulin G antibody. Molecular model of the antibody immunoglobulin G (IgG). Each coloured strand represents a protein chain


All Professionally Made to Order for Quick Shipping

The polypeptide chain is a vital component of the cell membrane, as depicted in various artworks such as C013/7467, F007/1477, F007/1479, F007/1480, F007/1478, F007/1475, F007/1474 and F007/1473. These stunning illustrations showcase the intricate structure of the cell membrane lipid bilayer. In artwork C016 / 0614, we can observe how the polypeptide chain interacts with the phospholipids that make up the lipid bilayer. This interaction plays a crucial role in maintaining the integrity and functionality of the cell membrane. Furthermore, artwork C016 / 0613 highlights how specific regions of the polypeptide chain span across both layers of the lipid bilayer. This transmembrane arrangement allows for essential transport processes to occur within cells. As seen in artwork C016 / 0609 and C016 / 0607, these polypeptides are not randomly arranged but rather possess unique sequences dictated by genetic information. The precise order of amino acids within each polypeptide determines its function and contributes to overall cellular processes. The complexity and diversity portrayed through these captivating artworks emphasize just how significant they are in maintaining cellular homeostasis. From providing structural support to facilitating communication between cells, these chains play an integral role in ensuring proper functioning at a microscopic level. These mesmerizing depictions shed light on our understanding of polypeptide chains within cell membranes. They serve as a reminder that even at an artistic level; science can be beautifully represented while unraveling nature's intricacies.