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Assessments grading scale

Score in alphabetic system

The points digital equivalent

Percentage %

Evaluation of traditional system

A

4.0

95-100 %

EXCELLENT

A-

3.67

90-94 %

B+

3.33

85-89 %

GOOD

B

3.0

80-84

B-

2.67

75-79 %

C+

2.33

70-74 %

SATISFACTORILY

C

2.0

65-69 %

C-

1.67

60-64 %

D+

1.33

55-59 %

D

1.0

50-54 %

F

0

0-49 %

UNSATISFACTORILY

The time of consultations and examinations:

Lecturer conducts consultation on schedule. examinations are also conducted according to schedule.

SPECIALITY – GENERAL MEDICINE

DEPARTMENT OF MOLECULAR BIOLOGY AND GENETICS

LECTURE COMPLEX

COURSE: 1

DISCIPLINE: MOLECULAR BIOLOGY AND MEDICAL GENETICS

ORIGINATORS: teachers of department

Translaters:doctor of medical sciences, professor - Kuandykov E. U., candidate of biology sciences, docent – Almuhambetova S. K.

2012 year

It is discussed and approved at faculty meeting from April "12" of 2012 y., the protocol No. 15

Head of the department, professorKuandykov E. U.

Lectures No. 1-2

1. Theme: Implementation of heriditary information

2. Purpose: To create at students modern representations and knowledge of the direction and mechanisms of transfer of heriditary information in live systems, their role and value in functioning of live organisms in normal and pathological conditions.

3. Theses of lectures:

3.1 Central dogma of molecular biology (the main postulate of Cry). Types of transfer of genetic information in live systems: the general, specialized, forbidden.

3.2 Replication. Basic principles and types of replication of DNA.Concept about replicon.

3.3. Transcription. Transcription mechanisms at prokaryote and eukaryote.Processing and splaysing.Alternative splaysing.

3.4. Problem trailer not replications and its decision.

3.5. Genetic code, concept, properties.

3.6. Translation. Translation mechanisms (protein biosynthesis).

3.7. Post-transmitting updating of proteins.

Implementation of heriditary information includes processes of replication (self-gemination) of DNA for ensuring constancy of a heriditary material among cellular generations; transcriptions – copyings of heriditary information from DNA on information (matrix) RNA (i-RNK) and translations – transfer of nucleotide sequence i-RNK in amino-acid sequence (a protein biosynthesis).

The last process (translations) is carried out on the basis of the genetic code possessing certain properties. Translation provides a structural basis and functioning of cells and an organism.

In certain cases again synthesized protein is exposed to structural transformations (post-transmitting updating).

4. Illustrative material: multimedia lectures No. 1-2.