cell determination & cell differentiation. overview of birth lineage and death

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Cell Determination & Cell Differentiation

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Page 1: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Cell Determination&

Cell Differentiation

Page 2: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Overview of birth lineage and death

Page 3: Cell Determination & Cell Differentiation. Overview of birth lineage and death

All cells are derived from a singl cell

Page 4: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Cell Determination

CELL DETERMINATION is the process by which portions of the genome are selected for expression in different embryonic cells. This involves developmental decisions that gradually restrict cell fate. Cells can progress from TOTIPOTENT to PLURIPOTENT to DETERMINED.

Page 5: Cell Determination & Cell Differentiation. Overview of birth lineage and death

• From Egg To Tadpole next

• Blastula next

• Gastrulation next

• Huamn embryo development next

Animal cell undergoes simillar early embryonic development

Page 6: Cell Determination & Cell Differentiation. Overview of birth lineage and death

A cell can be determined long before it show any obervious outwad sign of differentiation

• Gastrula Endoderm,Mesoderm,Ectodermnext• Embryo Transplation next• Misplaced tissue next

Page 7: Cell Determination & Cell Differentiation. Overview of birth lineage and death

How do two cells with the same genome come to be different?

• Sister cells can be born different by an asymmetric cell division next

• Cell-to-cell interaction in cell fate

determination next

• Embryonic Induction next

Page 8: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Housekeeping gene

• Housekeeping Gene serving a fuction required in all the cell types of an organism, regardless of their specialized role.

Page 9: Cell Determination & Cell Differentiation. Overview of birth lineage and death

luxury gene

• Luxury gene Gene performing specialized function in a definite type of cell, not required by all cell types of an organism.

Page 10: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Cell Differentiation

Differentiation – The process whereby an unspecialized early embryonic cell acquires the features of a specialized cell such as a heart, liver, or muscle cell.

Page 11: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Differentiated Cell RemainTotipotent

• Cloning of animal by nulear transfer

Page 12: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Principle of Cell Differentiation

• Each differentiated cell contains a complete genome.

• The differences between different types of cells are only duo to expression of different kinds of proteins, that is, a set of genes are switched on in a certain type of cell, meanwhile are switched off in another type of cell.

Page 13: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Cell differentiation is controlled by Transcription

• Tissue specific transcription factors These proteins cause the experssion of a whole block of proteins that together give cell its identity.

Page 14: Cell Determination & Cell Differentiation. Overview of birth lineage and death

• Muscle Differentiation

Page 15: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Cell Differentiation is reversible

• Embryonic Stem cell (ES) can complete the whole process of differentia

tion in proper environment.next

• Differentiated cell can undergo dedifferentiation or transdifferentiation.

• Cancer cell can be induce to differentiate.next

Page 16: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Stem Cell• WHAT ARE THE UNIQUE PROPERTIES OF

ALL STEM CELLS? next

• WHAT ARE EMBRYONIC STEM CELLS? next

• WHAT ARE ADULT STEM CELLS? ext

• OBSTACLES THAT MUST BE OVERCOME next

Page 17: Cell Determination & Cell Differentiation. Overview of birth lineage and death

All stem cells have three general properties

• Stem cells are capable of dividing and renewing themselves for long periods.

• Stem cells are unspecialized.

• Stem cells can give rise to specialized cells.continue

Page 18: Cell Determination & Cell Differentiation. Overview of birth lineage and death

WHAT ARE EMBRYONIC STEM CELLS?

• Embryonic stem cells – Primitive (undifferentiated) cells from the embryo that have the potential to become a wide variety of specialized cell types.

• Human embryonic stem cells are derived from blastocyst

next

Page 19: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Diseases that might be treated by ES cells

• Diseases that might be treated by transplanting cells generated from human embryonic stem cells include Parkinson’s disease, diabetes, traumatic spinal cord injury, Purkinje cell degeneration, Duchenne’s muscular dystrophy, heart disease, and vision and hearing loss. next

Page 20: Cell Determination & Cell Differentiation. Overview of birth lineage and death

How are embryonic stem cells stimulated to differentiate?

Page 21: Cell Determination & Cell Differentiation. Overview of birth lineage and death

How are embryonic stem cells stimulated to differentiate? continued

Page 22: Cell Determination & Cell Differentiation. Overview of birth lineage and death

WHAT ARE ADULT STEM CELLS?

• Adult stem cell–An undifferentiated cell found in a differentiated tissue that can renew itself and (with certain limitations) differentiate to yield all the specialized cell types of the tissue from which it originated.

next

Page 23: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Heart muscle repair with adult stem cells.

Page 24: Cell Determination & Cell Differentiation. Overview of birth lineage and death

OBSTACLES THAT MUST BE OVERCOME

• Proliferate extensively and generate sufficient quantities of tissue.

• Differentiate into the desired cell type(s).

• Survive in the recipient after transplant.

Page 25: Cell Determination & Cell Differentiation. Overview of birth lineage and death

OBSTACLES THAT MUST BE OVERCOME continued

• Integrate into the surrounding tissue after transplant.

• Function appropriately for the duration of the recipient’s life.

• Avoid harming the recipient in any way.

Page 26: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Blastula

Page 27: Cell Determination & Cell Differentiation. Overview of birth lineage and death

The stages of cleavage in Xenopus

Page 28: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Early stages of mouse development

Page 29: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Early mouse embryo

Page 30: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Gastrulation

Page 31: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Layers of germ cell

Page 32: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Differetiation of Human Tissue

Page 33: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Embryonic Germ Layers From Which Differentiated Tissues

Develop

Page 34: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Development of the Preimplantation Blastocyst in Humans

Page 35: Cell Determination & Cell Differentiation. Overview of birth lineage and death

40 weeks of huamn

Page 36: Cell Determination & Cell Differentiation. Overview of birth lineage and death

My daughter

Page 37: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Misplaced toe

Page 38: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Two wing bud

Page 39: Cell Determination & Cell Differentiation. Overview of birth lineage and death

The standard test for cell determination

Page 40: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Enuleate frog

Page 41: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Microinjection

Page 42: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Clone pig A

Page 43: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Clone Pig B

Page 44: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Clone Pig C

Page 45: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Birth of Dolly

Page 46: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Dolly,1 year old

Page 47: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Dolly with Reportor

Page 48: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Ainstan & Hitler

Page 49: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Dolly and Polly

Page 50: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Dolly,6 years old

Page 51: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Dolly with Wilmut

Page 52: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Two ways making sister cells different

Page 53: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Asymmetric division are particularly common at the beginning of development, when the fertilized egg divides to give daughter cells with different fates,but they also occur at later stages—in the genesis of nerbe cells,for example.next

Page 54: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Asymmetric division segregating P granules into the founder cel of the C.elegans germ line.

Page 55: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Caenorhabditis elegan

Page 56: Cell Determination & Cell Differentiation. Overview of birth lineage and death

The linegae tree for the cells that form the gut of C.elegans.

Page 57: Cell Determination & Cell Differentiation. Overview of birth lineage and death

The pattern of the cell divisions in the early nematode embryo.

Page 58: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Cell-signal path ways controlling assignment of different characters to the cells in a four-cell nematode embryo.

Page 59: Cell Determination & Cell Differentiation. Overview of birth lineage and death

• Vertebrate embryos rely extensively

upon inductive interactions to

diversify the number of different

kinds of cells in the embryo.next

Page 60: Cell Determination & Cell Differentiation. Overview of birth lineage and death

• Induction is the process by which one

group of cells produces a signal that

determines the fate of a second

group of cells.

Page 61: Cell Determination & Cell Differentiation. Overview of birth lineage and death

• This implies both the capacity to produce a signal (ligand) by the inducing cells and the competence of the responding cells to receive and interpret the signal via a signal transduction pathway.

• The chemical characterist of inducer is protein.

Page 62: Cell Determination & Cell Differentiation. Overview of birth lineage and death

The presence of organizing centers—the Mangold–Spemann experiment.a

Page 63: Cell Determination & Cell Differentiation. Overview of birth lineage and death

The presence of organizing centers—the Mangold–Spemann experiment.b

Page 64: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Patterning by sequential induction

Page 65: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Development of Human Embryonic Tissues

Page 66: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Techniques for Generating Embryonic Stem Cell Cultures

Page 67: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Embryonic cell can be maintained

Page 68: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Creating chimeric mouse

Page 69: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Making chimeric mouse with ES cell

Page 70: Cell Determination & Cell Differentiation. Overview of birth lineage and death

Patterns of stem cell division